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<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;This data shows the depth of the seabed around Ireland between 0 and 200 metre depths. The data was collected between 2001 and 2021. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;Bathymetry is the measurement of how deep is the sea. Bathymetry is the study of the shape and features of the seabed. The name comes from Greek words meaning "deep" and “measure". Bathymetry is collected on board boats working at sea and airplanes over land and coastline. The boats use special equipment called a multibeam echosounder. A multibeam echosounder is a type of sonar that is used to map the seabed. Sound waves are emitted in a fan shape beneath the boat. The amount of time it takes for the sound waves to bounce off the bottom of the sea and return to a receiver is used to determine water depth. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;LiDAR (Light Detection and Ranging) is another way to map the seabed, using airplanes. Two laser light beams are emitted from a sensor on-board an airplane. The red beam reaches the water surface and bounces back; while the green beam penetrates the water hits the seabed and bounces back. The difference in time between the two beams returning allows the water depth to be calculated. LiDAR is only suitable for shallow waters (up to 30m depth). &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;The data are collected as points in XYZ format. X and Y coordinates and Z (depth). The boat travels up and down the water in a series of lines (trackline). An XYZ file is created for each line and contains thousands of points. The line files are merged together and converted into gridded data to create a Digital Terrain Model of the seabed. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;Colours are also used to show depth ranges. Reds and browns show heights above sea-level. Yellows and greens are shallow waters up to 45m deep. Blues (up to 110m deep) and purple show deeper waters up to 200m deep. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;This is a raster dataset. Raster data stores information in a cell-based manner and consists of a matrix of cells (or pixels) organised into rows and columns. The format of the raster is a grid. The grid cell size is 10m by 10m. This means that each cell (pixel) represents an area on the seabed of 10 metres squared. Each cell has a depth value which is the average depth of all the points located within that cell. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;This data shows areas that have been surveyed. There are plans to fill in the missing areas between 2020 and 2026. The deeper offshore waters were mapped as part of the Irish National Seabed Survey (INSS) between 1999 and 2005. INtegrated Mapping FOr the Sustainable Development of Ireland's MArine Resource (INFOMAR) is mapping the inshore areas. (2006 - 2026).&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
<idPurp>Bathymetry is a measure of how deep the sea is. Knowing the depth of the sea and its shape is vital for creating nautical charts. Accurate charts allow sailors to safely travel the seas. The charts give water depths so sailors can avoid running aground. They also provide locations of dangers such as rocks, sand banks or shipwrecks which may be located in shallow water or have objects such as a ship mast standing upright. This data is used by the United Kingdom Hydrographic Office (UKHO) to update the nautical charts used in Irish Waters.
Seabed maps are useful when building structures on the seabed such as offshore energy devices (wind, tide and wave), bridges and tunnels. The maps help to select the best site for the structure. Understanding the terrain of the seabed will help prevent any disasters or long term problems with a structure. This can be done by avoiding unsuitable seabed terrain or engineering a project to suit the type of seabed terrain it is to be built on.
They are also useful for laying cables and pipelines on the seabed. They help find the best route to lay them and help spot any hazards like shipwrecks.
The maps are important for marine research. They allow us to study how the ocean crust formed and how glaciers once moved over coastal areas. They also help us to model how ocean currents and tides flow around the coastline and predict which coastal areas may be affected by rising sea levels. The maps help us figure out where marine species live, feed, and breed. This is important for fisheries and conservation.
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<idCredit>Contains Irish Public Sector Data (Geological Survey Ireland &amp; Marine Institute) licensed under a Creative Commons Attribution 4.0 International (CC BY 4.0) licence
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<keyword>March, April, May, June, July, August, September, October, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010, 2011, 2012, 2013, 2014, 2015, 2016, 2017, 2018, 2019, 2020, 2021</keyword>
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<keyword>Elevation</keyword>
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<keyword>Bathymetry and Elevation</keyword>
<keyword>water depth</keyword>
<keyword>IE/GSI</keyword>
<keyword>IE/MARINE</keyword>
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<keyword>Geological Survey Ireland</keyword>
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<keyword>INFOMAR</keyword>
<keyword>Joint Irish Bathymetric Survey (JIBS)</keyword>
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<useLimit>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;Data that is produced directly by the Geological Survey Ireland (GSI) and the Marine Institute (MI) is free for use under the conditions of Creative Commons Attribution 4.0 International license. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;A href="https://creativecommons.org:443/licenses/by/4.0/" STYLE="text-decoration:underline;"&gt;&lt;SPAN&gt;https://creativecommons.org/licenses/by/4.0/&lt;/SPAN&gt;&lt;/A&gt;&lt;/P&gt;&lt;P&gt;&lt;A href="https://creativecommons.org:443/licenses/by/4.0/legalcode" STYLE="text-decoration:underline;"&gt;&lt;SPAN&gt;https://creativecommons.org/licenses/by/4.0/legalcode&lt;/SPAN&gt;&lt;/A&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;Under the CC-BY Licence, users must acknowledge the source of the Information in their product or application. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN STYLE="font-weight:bold;"&gt;Please use this specific attribution statement: "Contains Irish Public Sector Data (Geological Survey Ireland &amp;amp;amp; Marine Institute) licensed under a Creative Commons Attribution 4.0 International (CC BY 4.0) licence".&lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;In cases where it is not practical to use the statement users may include a URI or hyperlink to a resource that contains the required attribution statement. &lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</useLimit>
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<suppInfo>Description of measurements/samples, purpose for which they were collected, and the platforms/instrumentation and methods in collection
Mosaic to New Raster of 326 bathymetry 10m imagery collected between 2001 and 2021 under the Irish National Seabed Survey (INSS) and INFOMAR survey programmes. Images loaded using "Mosaic to New Raster" and "Build Pyramids" list includes:
BY_CV01_01_GalwayBay_10m_WGS84
BY_CV02_01_Donegal_10m_WGS84
BY_CV02_02_CelticSeaScallop_10m_WGS84
BY_CV02_02_CelticSeaScallop_SouthCoast_10m_WGS84
BY_CV02_02_CelticSeaScallop_Tuskar_10m_WGS84
BY_LiDAR_2002_ClewBay_10m_LAT_WGS84
BY_CE03_01_Donegal_10m_WGS84
BY_CE03_02_Donegal_10m_WGS84
BY_CE03_03_Donegal_10m_WGS84
BY_CE03_04_Donegal_10m_WGS84
BY_CE03_05_Donegal_10m_WGS84
BY_CV03_01_Dublin_10m_WGS84
BY_LiDAR_2003_ClewBay_10m_LAT_WGS84
BY_LiDAR_2003_KillalaBay_10m_LAT_WGS84
BY_CE04_01_TraleeBay_10m_WGS84
BY_CE04_02_Donegal_10m_WGS84
BY_CE04_03_Donegal_10m_WGS84
BY_CE04_04_Donegal_10m_WGS84
BY_CE04_05_Donegal_10m_WGS84
BY_CE04_05_Kerry_10m_WGS84
BY_CV04_01_Dundalk_10m_WGS84
BY_CE05_01_Donegal_10m_WGS84
BY_CE05_02_Donegal_10m_WGS84
BY_CE05_03_Donegal_10m_WGS84
BY_CE05_04_Donegal_Killary_10m_WGS84
BY_CE05_04_Kerry_10m_WGS84
BY_CV05_01_KillalaBay_10m_WGS84
BY_CV05_02_HABMAP1_Wicklow_10m_WGS84
BY_CV05_02_HABMAP2_Wexford_10m_WGS84
BY_CV05_02_HABMAP3_BannerBankSouth_10m_WGS84
BY_CV05_02_HABMAP4_BannerBankNorth_10m_WGS84
BY_CV05_02_HABMAP5_Wales_10m_WGS84
BY_LiDAR_2005_MulroyBay_10m_MH_WGS84
BY_CE06_01_KerryEast_10m_WGS84
BY_CV06_02_ADFISH_Wexford_10m_WGS84
BY_IMAR06_BantryBay_10m_WGS84
BY_LiDAR_2006_DunmanusBay_10m_LAT_WGS84
BY_LiDAR_2006_GalwayBay_10m_LAT_WGS84
BY_CE07_01_WestKerry_10m_WGS84
BY_CE07_02_Kerry_10m_WGS84
BY_CV07_01_GalwayBay_10m_WGS84
BY_CV07_01_Kish_10m_WGS84
BY_CV07_01_OE_EagleIsland_10m_WGS84
BY_CV07_02_Bantry_10m_WGS84
BY_CV07_02_Cork_10m_WGS84
BY_CV07_02_Dunmanus_10m_WGS84
BY_CV07_02_Waterford_10m_WGS84
BY_CV07_CV08_JIBS_DonegalDerryAntrim_10m_WGS84
BY_CV07_JIBS_Malin_10m_WGS84
BY_IMAR07_GalwayBay_10m_WGS84
BY_IMAR07_01_LoopHeadClare_10m_WGS84
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Please note the following: Following installation of a new vessel positioning system in March 2011, hydrographic data acquired were vertically levelled to LAT using the UKHO VORF Model which is based on ellipsoid height. The Tidal height is derived via the Global Navigation Satellite Systems. Data acquired on the RV Celtic Voyager prior to March 2011 were levelled to LAT using shifts derived from Proudman Oceanographic tidal model. Tidal height was derived using a network of offshore and onshore tide gauges. As such data are on average 0.54m deeper than the more recent VORF levelled data. Statement on the level of data processed and quality control, limitations on reliability. See lineage statement for full data processing history. INFOMAR products generated to meet International Hydrographic Organization (IHO) standards to ensure gridded data positional accuracy in the horizontal (XY) and vertical (Z) frame.
Arrangement of data Data has been processed and arranged into a 1 Band Esri Grid uploaded to ArcGIS system.
Spatial and temporal resolution of data within the dataset Image resolution is a 10m raster dataset.
Length of time series The surveys were-carried out between the 2001-08-27-and 2021-10-27. Amount of data expressed in number of stations, sites, observations, cores, months of recordings, miles of track or other units as appropriate
Bathymetry Raster Dataset (image) is 16.55 GB containing Columns (66571) and Rows (66752). Number of Bands 1. Cell Size (X, Y) 10, 10</suppInfo>
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<orName>GEMET</orName>
<orDesc>Indexing, retrieval and control tool for the European Topic Centre on Catalogue of Data Sources (ETC/CDS) and the European Environment Agency (EEA)</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>science, natural science, earth science, geology, marine geology, geography, hydrography</keyword>
</discKeys>
<stratKeys>
<thesaName>
<resTitle>GEMET - Themes, version 4.2.3, 6 Dec 2021</resTitle>
<resAltTitle>GEMET - Concepts</resAltTitle>
<date>
<reviseDate>2021-12-06T23:59:59</reviseDate>
</date>
<collTitle>GEneral Multilingual Environmental Thesaurus</collTitle>
<citOnlineRes>
<linkage>https://www.eionet.europa.eu/gemet/en/themes/</linkage>
<protocol>text/html</protocol>
<orName>GEMET</orName>
<orDesc>Indexing, retrieval and control tool for the European Topic Centre on Catalogue of Data Sources (ETC/CDS) and the European Environment Agency (EEA)</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>hydrosphere</keyword>
</stratKeys>
<otherKeys>
<thesaName>
<resTitle>SeaVoX Platform Categories</resTitle>
<resAltTitle>SeaVoX Platform Categories</resAltTitle>
<date>
<reviseDate>2020-09-11T00:00:00</reviseDate>
</date>
<collTitle>British Oceanographic Data Centre L06</collTitle>
<citOnlineRes>
<linkage>http://vocab.nerc.ac.uk/collection/L06/current/</linkage>
<protocol>text/html</protocol>
<orName>SeaVoX Platform Categories</orName>
<orDesc>2-level grouping term hierarchy used for vehicles, structures or organisms capable of bearing instruments or tools for the collection of physical, chemical, geological or biological samples or data</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>research vessel</keyword>
</otherKeys>
<otherKeys>
<thesaName>
<resTitle>Partnership for Observation of the Global Ocean ships of interest</resTitle>
<resAltTitle>POGO ships</resAltTitle>
<date>
<reviseDate>2021-02-25T00:00:00</reviseDate>
</date>
<collTitle>British Oceanographic Data Centre P17</collTitle>
<citOnlineRes>
<linkage>http://vocab.nerc.ac.uk/collection/P17/current/</linkage>
<protocol>text/html</protocol>
<orName>Partnership for Observation of the Global Ocean ships of interest</orName>
<orDesc>Research vessels deemed to be of interest to POGO. 'Of interest' is defined as active ocean-going research vessels greater than 60m in length</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>RV Celtic Explorer, RV Celtic Voyager, RV Keary, RV Geo, RV Tonn, RV Lir, RV Mallet, RV Corystes, Northern Wind</keyword>
</otherKeys>
<otherKeys>
<thesaName>
<resTitle>SeaDataNet device categories</resTitle>
<resAltTitle>SDN devices</resAltTitle>
<date>
<reviseDate>2021-01-25T00:00:00</reviseDate>
</date>
<collTitle>British Oceanographic Data Centre L05</collTitle>
<citOnlineRes>
<linkage>http://vocab.nerc.ac.uk/collection/L05/current/</linkage>
<protocol>text/html</protocol>
<orName>SDN devices</orName>
<orDesc>Terms used to classify groups of sensors, instruments, sources of algorithmically computed data (numerical models) or samplers (collectors of water, SPM, sediment, rock, air or biota samples).</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>multi-beam echosounders</keyword>
</otherKeys>
<otherKeys>
<thesaName>
<resTitle>SeaVoX Device Catalogue</resTitle>
<resAltTitle>SeaVoX Device Catalogue</resAltTitle>
<date>
<reviseDate>2021-03-24T00:00:00</reviseDate>
</date>
<collTitle>British Oceanographic Data Centre L22</collTitle>
<citOnlineRes>
<linkage>http://vocab.nerc.ac.uk/collection/L22/current/</linkage>
<protocol>text/html</protocol>
<orName>SeaVoX Devices</orName>
<orDesc>Terms for distinct sampling or measuring devices that may be identified in the real world in terms of manufacturer and model number.</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>Kongsberg EM 1002 multibeam echosounder, Kongsberg EM 2040D multibeam echosounder, Kongsberg EM 3002D, HawkEyeIIB Bathymetric LiDAR, Teledyne Reson SeaBat T20-P,</keyword>
</otherKeys>
<otherKeys>
<thesaName>
<resTitle>INFOMAR Website</resTitle>
<resAltTitle>INFOMAR keywords</resAltTitle>
<date>
<pubDate>2022-03-15T23:59:59</pubDate>
</date>
<resEd>2022</resEd>
<citOnlineRes>
<linkage>http://www.infomar.ie</linkage>
<orName>INFOMAR</orName>
<orDesc>INtegrated Mapping FOr the Sustainable Development of Ireland’s MArine Resource</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
<protocol>text/html</protocol>
</citOnlineRes>
</thesaName>
<keyword>INFOMAR</keyword>
</otherKeys>
<otherKeys>
<thesaName>
<resTitle>Global Change Master Directory (GCMD) Data Center Keywords 9.1.5</resTitle>
<resAltTitle>GCMD Data Center Keywords</resAltTitle>
<date>
<pubDate>2016-08-04T00:00:00</pubDate>
</date>
<resEd>9.1.5</resEd>
<citOnlineRes>
<linkage>https://vocabs.ardc.edu.au/repository/api/lda/ardc-curated/gcmd-providers/9-1-5-2020-02-06/resource?uri=https://gcmdservices.gsfc.nasa.gov/kms/concept/4bdbb012-4aed-485b-8ee8-16519985681e</linkage>
<protocol>text/html</protocol>
<orName>GCMD Data Center Keywords</orName>
<orDesc>GCMD Data Center Keywords</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</thesaName>
<keyword>IE/GSI</keyword>
</otherKeys>
<otherKeys>
<thesaName>
<resTitle>Global Change Master Directory (GCMD) Data Center Keywords 9.1.5</resTitle>
<resAltTitle>GCMD Data Center Keywords</resAltTitle>
<date>
<pubDate>2016-08-04T00:00:00</pubDate>
</date>
<resEd>9.1.5</resEd>
<citOnlineRes>
<linkage>https://vocabs.ardc.edu.au/repository/api/lda/ardc-curated/gcmd-providers/9-1-5-2020-02-06/resource?uri=https://gcmdservices.gsfc.nasa.gov/kms/concept/4e2ac7a7-8896-41a2-acd6-b4da781ace5f</linkage>
<orName>GCMD Data Center Keywords</orName>
<orDesc>GCMD Data Center Keywords</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
<protocol>text/html</protocol>
</citOnlineRes>
</thesaName>
<keyword>IE/MARINE</keyword>
</otherKeys>
<tpCat>
<TopicCatCd value="014"/>
</tpCat>
<tpCat>
<TopicCatCd value="008"/>
</tpCat>
<tpCat>
<TopicCatCd value="007"/>
</tpCat>
<tpCat>
<TopicCatCd value="010"/>
</tpCat>
<tpCat>
<TopicCatCd value="006"/>
</tpCat>
<tpCat>
<TopicCatCd value="013"/>
</tpCat>
</dataIdInfo>
<mdMaint>
<maintFreq>
<MaintFreqCd value="009"/>
</maintFreq>
<dateNext>2020-01-31T00:00:00</dateNext>
<maintScp>
<ScopeCd value="005"/>
</maintScp>
<upScpDesc>
<datasetSet>bathymetry10m Mosaic Dataset</datasetSet>
</upScpDesc>
</mdMaint>
<mdConst>
<Consts>
<useLimit>Data that is produced directly by the Geological Survey Ireland (GSI) and the Marine Institute (MI) is free for use under the conditions of Creative Commons Attribution 4.0 International license.</useLimit>
</Consts>
</mdConst>
<mdConst>
<LegConsts>
<accessConsts>
<RestrictCd value="005"/>
</accessConsts>
<useConsts>
<RestrictCd value="005"/>
</useConsts>
<useLimit>
Data that is produced directly by the Geological Survey Ireland (GSI) and the Marine Institute (MI) is free for use under the conditions of Creative Commons Attribution 4.0 International license.
<a href="https://creativecommons.org/licenses/by/4.0/">https://creativecommons.org/licenses/by/4.0/</a>
<br>
<a href="https://creativecommons.org/licenses/by/4.0/legalcode">https://creativecommons.org/licenses/by/4.0/legalcode</a>
</br>
Under the CC-BY Licence, users must acknowledge the source of the Information in their product or application.
Please use this specific attribution statement: <b>"Contains Irish Public Sector Data (Geological Survey Ireland &amp; Marine Institute) licensed under a Creative Commons Attribution 4.0 International (CC BY 4.0) licence".</b>
In cases where it is not practical to use the statement users may include a URI or hyperlink to a resource that contains the required attribution statement.
</useLimit>
</LegConsts>
</mdConst>
<mdConst>
<SecConsts>
<class>
<ClasscationCd value="001"/>
</class>
<handDesc>no limitations to public access</handDesc>
</SecConsts>
</mdConst>
<dqInfo>
<dqScope>
<scpLvl>
<ScopeCd value="005"/>
</scpLvl>
</dqScope>
<report dimension="" type="DQCompComm">
<measName>Excess items</measName>
<measDesc>Presence or absence of features, their attributes and relationships</measDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalProc>
<resTitle>International Hydrographic Organization (IHO) Standards for Hydrographic Surveys (S-44)</resTitle>
<resAltTitle>IHO Special Publication No. 44</resAltTitle>
<date>
<pubDate>2008-02-28T00:00:00</pubDate>
</date>
<collTitle>S-44</collTitle>
<resEd>5th Edition</resEd>
</evalProc>
<measResult>
<ConResult>
<conSpec>
<resTitle>IHO Standards for Hydrographic Surveys (S-44) - Classification of Surveys - Order 1a</resTitle>
<resAltTitle>IHO S-44 Order 1a</resAltTitle>
<date>
<reviseDate>2022-05-20T11:00:00</reviseDate>
</date>
<collTitle>Order 1a</collTitle>
</conSpec>
<conExpl>This order is intended for those areas where the sea is sufficiently shallow to allow natural or man-made features on the seabed to be a concern to the type of surface shipping expected to transit the area but where the under-keel clearance is less critical than for Special Order above. Because man-made or natural features may exist that are of concern to surface shipping, a full sea floor search is required, however the size of the feature to be detected is larger than for Special Order. Under-keel clearance becomes less critical as depth increases so the size of the feature to be detected by the full sea floor search is increased in areas where the water depth is greater than 40 metres. Order 1a surveys may be limited to water shallower than 100 metres.</conExpl>
<conPass>true</conPass>
</ConResult>
</measResult>
</report>
<dataLineage>
<statement>Dataset created from ArcGIS Model Builder using "Add Rasters" to Mosaic Dataset and "Build Pyramids" toolsets. See Geogprocessing history for more details.</statement>
<prcStep>
<stepDesc># -*- coding: utf-8 -*-
"""
Generated by ArcGIS ModelBuilder on : 2021-12-21 14:53:04
"""
import arcpy
def Model11(): # Create Raster Dataset 10m
# To allow overwriting outputs change overwriteOutput option to True.
arcpy.env.overwriteOutput = False
BY_CV01_01_GalwayBay_10m_WGS84 = arcpy.Raster("D:BY_CV01_01_GalwayBay_10m_WGS84")
 
BY_CV02_01_DonegalBay_10m_WGS84 = arcpy.Raster("D:BY_CV02_01_DonegalBay_10m_WGS84")
 
BY_CV02_02_CelticSeaScallop_10m_WGS84 = arcpy.Raster("D:BY_CV02_02_CelticSeaScallop_10m_WGS84")
 
BY_CV02_02_CelticSeaScallop_SouthCoast_10m_WGS84 = arcpy.Raster("D:BY_CV02_02_CelticSeaScallop_SouthCoast_10m_WGS84")
 
BY_CV02_02_CelticSeaScallop_Tuskar_10m_WGS84 = arcpy.Raster("D:BY_CV02_02_CelticSeaScallop_Tuskar_10m_WGS84")
 
BY_LiDAR_2002_ClewBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2002_ClewBay_10m_LAT_WGS84")
 
BY_CE03_01_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE03_01_Donegal_10m_WGS84")
 
BY_CE03_02_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE03_02_Donegal_10m_WGS84")
 
BY_CE03_03_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE03_03_Donegal_10m_WGS84")
 
BY_CE03_04_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE03_04_Donegal_10m_WGS84")
 
BY_CE03_05_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE03_05_Donegal_10m_WGS84")
 
BY_CV03_01_Dublin_10m_WGS84 = arcpy.Raster("D:BY_CV03_01_Dublin_10m_WGS84")
 
BY_LiDAR_2003_ClewBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2003_ClewBay_10m_LAT_WGS84")
 
BY_LiDAR_2003_KillalaBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2003_KillalaBay_10m_LAT_WGS84")
 
BY_CE04_01_TraleeBay_10m_WGS84 = arcpy.Raster("D:BY_CE04_01_TraleeBay_10m_WGS84")
 
BY_CE04_02_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE04_02_Donegal_10m_WGS84")
 
BY_CE04_03_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE04_03_Donegal_10m_WGS84")
 
BY_CE04_04_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE04_04_Donegal_10m_WGS84")
 
BY_CE04_05_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE04_05_Donegal_10m_WGS84")
 
BY_CE04_05_Kerry_10m_WGS84 = arcpy.Raster("D:BY_CE04_05_Kerry_10m_WGS84")
 
BY_CV04_01_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_CV04_01_Dundalk_10m_WGS84")
 
BY_CE05_01_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE05_01_Donegal_10m_WGS84")
 
BY_CE05_02_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE05_02_Donegal_10m_WGS84")
 
BY_CE05_03_Donegal_10m_WGS84 = arcpy.Raster("D:BY_CE05_03_Donegal_10m_WGS84")
 
BY_CE05_04_Donegal_Killary_10m_WGS84 = arcpy.Raster("D:BY_CE05_04_Donegal_Killary_10m_WGS84")
 
BY_CE05_04_Kerry_10m_WGS84 = arcpy.Raster("D:BY_CE05_04_Kerry_10m_WGS84")
 
BY_CV05_01_KillalaBay_10m_WGS84 = arcpy.Raster("D:BY_CV05_01_KillalaBay_10m_WGS84")
 
BY_CV05_02_HABMAP1_Wicklow_10m_WGS84 = arcpy.Raster("D:BY_CV05_02_HABMAP1_Wicklow_10m_WGS84")
 
BY_CV05_02_HABMAP2_Wexford_10m_WGS84 = arcpy.Raster("D:BY_CV05_02_HABMAP2_Wexford_10m_WGS84")
 
BY_CV05_02_HABMAP3_BannerBankSouth_10m_WGS84 = arcpy.Raster("D:BY_CV05_02_HABMAP3_BannerBankSouth_10m_WGS84")
 
BY_CV05_02_HABMAP4_BannerBankNorth_10m_WGS84 = arcpy.Raster("D:BY_CV05_02_HABMAP4_BannerBankNorth_10m_WGS84")
 
BY_CV05_02_HABMAP5_Wales_10m_WGS84 = arcpy.Raster("D:BY_CV05_02_HABMAP5_Wales_10m_WGS84")
 
BY_LiDAR_2005_MulroyBay_10m_MH_WGS84 = arcpy.Raster("D:BY_LiDAR_2005_MulroyBay_10m_MH_WGS84")
 
BY_CE06_01_KerryEast_10m_WGS84 = arcpy.Raster("D:BY_CE06_01_KerryEast_10m_WGS84")
 
BY_CV06_02_ADFISH_Wexford_10m_WGS84 = arcpy.Raster("D:BY_CV06_02_ADFISH_Wexford_10m_WGS84")
 
BY_IMAR06_BantryBay_10m_WGS84 = arcpy.Raster("D:BY_IMAR06_BantryBay_10m_WGS84")
 
BY_LiDAR_2006_DunmanusBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2006_DunmanusBay_10m_LAT_WGS84")
 
BY_LiDAR_2006_GalwayBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2006_GalwayBay_10m_LAT_WGS84")
 
BY_CE07_01_WestKerry_10m_WGS84 = arcpy.Raster("D:BY_CE07_01_WestKerry_10m_WGS84")
 
BY_CE07_02_Kerry_10m_WGS84 = arcpy.Raster("D:BY_CE07_02_Kerry_10m_WGS84")
 
BY_CV07_01_GalwayBay_10m_WGS84 = arcpy.Raster("D:BY_CV07_01_GalwayBay_10m_WGS84")
 
BY_CV07_01_Kish_10m_WGS84 = arcpy.Raster("D:BY_CV07_01_Kish_10m_WGS84")
 
BY_CV07_01_OE_EagleIsland_10m_WGS84 = arcpy.Raster("D:BY_CV07_01_OE_EagleIsland_10m_WGS84")
 
BY_CV07_02_Bantry_10m_WGS84 = arcpy.Raster("D:BY_CV07_02_Bantry_10m_WGS84")
 
BY_CV07_02_Cork_10m_WGS84 = arcpy.Raster("D:BY_CV07_02_Cork_10m_WGS84")
 
BY_CV07_02_Dunmanus_10m_WGS84 = arcpy.Raster("D:BY_CV07_02_Dunmanus_10m_WGS84")
 
BY_CV07_02_Waterford_10m_WGS84 = arcpy.Raster("D:BY_CV07_02_Waterford_10m_WGS84")
 
BY_CV07_CV08_JIBS_DonegalDerryAntrim_10m_WGS84 = arcpy.Raster("D:BY_CV07_CV08_JIBS_DonegalDerryAntrim_10m_WGS84")
 
BY_CV07_JIBS_Malin_10m_WGS84 = arcpy.Raster("D:BY_CV07_JIBS_Malin_10m_WGS84")
 
BY_IMAR07_GalwayBay_10m_WGS84 = arcpy.Raster("D:BY_IMAR07_GalwayBay_10m_WGS84")
 
BY_IMAR07_LoopHeadClare_10m_WGS84 = arcpy.Raster("D:BY_IMAR07_LoopHeadClare_10m_WGS84")
 
BY_CV08_01_Belmullet_10m_WGS84 = arcpy.Raster("D:BY_CV08_01_Belmullet_10m_WGS84")
 
BY_CV08_01_Blacksod_10m_WGS84 = arcpy.Raster("D:BY_CV08_01_Blacksod_10m_WGS84")
 
BY_CV08_01_DonegalSligo_10m_WGS84 = arcpy.Raster("D:BY_CV08_01_DonegalSligo_10m_WGS84")
 
BY_CV08_02_AranIslands_10m_WGS84 = arcpy.Raster("D:BY_CV08_02_AranIslands_10m_WGS84")
 
BY_CV08_02_Cork_10m_WGS84 = arcpy.Raster("D:BY_CV08_02_Cork_10m_WGS84")
 
BY_CV08_02_GalwayBay_10m_WGS84 = arcpy.Raster("D:BY_CV08_02_GalwayBay_10m_WGS84")
 
BY_CV08_02_KowloonBridgeWreck_10m_WGS84 = arcpy.Raster("D:BY_CV08_02_KowloonBridgeWreck_10m_WGS84")
 
BY_CV08_02_SmartBayGalwayBay_10m_WGS84 = arcpy.Raster("D:BY_CV08_02_SmartBayGalwayBay_10m_WGS84")
 
BY_CV08_03_Dublin_10m_WGS84 = arcpy.Raster("D:BY_CV08_03_Dublin_10m_WGS84")
 
BY_LiDAR_2008_Blacksod_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_Blacksod_10m_LAT_WGS84")
 
BY_LiDAR_2008_DonegalBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_DonegalBay_10m_LAT_WGS84")
 
BY_LiDAR_2008_GalwayBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_GalwayBay_10m_LAT_WGS84")
 
BY_LiDAR_2008_GreatmansBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_GreatmansBay_10m_LAT_WGS84")
 
BY_LiDAR_2008_LoughFoyle_10m_BL_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_LoughFoyle_10m_BL_WGS84")
 
BY_LiDAR_2008_SligoBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_SligoBay_10m_LAT_WGS84")
 
BY_LiDAR_2008_TraleeBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2008_TraleeBay_10m_LAT_WGS84")
 
BY_CV09_01_ShannonEstuary_10m_WGS84 = arcpy.Raster("D:BY_CV09_01_ShannonEstuary_10m_WGS84")
 
BY_CV09_02_Kerry_10m_WGS84 = arcpy.Raster("D:BY_CV09_02_Kerry_10m_WGS84")
 
BY_CV09_02_Tralee_10m_WGS84 = arcpy.Raster("D:BY_CV09_02_Tralee_10m_WGS84")
 
BY_CV09_03_RosslareHarbour_10m_WGS84 = arcpy.Raster("D:BY_CV09_03_RosslareHarbour_10m_WGS84")
 
BY_CV09_03_Wexford_10m_WGS84 = arcpy.Raster("D:BY_CV09_03_Wexford_10m_WGS84")
 
BY_CV09_05_UCC_EastCoast_10m_WGS84 = arcpy.Raster("D:BY_CV09_05_UCC_EastCoast_10m_WGS84")
 
BY_CV09_UCC_Codling_10m_WGS84 = arcpy.Raster("D:BY_CV09_UCC_Codling_10m_WGS84")
 
BY_KRY09_02_Dublin_10m_WGS84 = arcpy.Raster("D:BY_KRY09_02_Dublin_10m_WGS84")
 
BY_CV10_01_EastCoast_10m_WGS84 = arcpy.Raster("D:BY_CV10_01_EastCoast_10m_WGS84")
 
BY_CV10_01_Wicklow_10m_WGS84 = arcpy.Raster("D:BY_CV10_01_Wicklow_10m_WGS84")
 
BY_CV10_02_CelticSea_10m_WGS84 = arcpy.Raster("D:BY_CV10_02_CelticSea_10m_WGS84")
 
BY_CV10_03_Youghal_10m_WGS84 = arcpy.Raster("D:BY_CV10_03_Youghal_10m_WGS84")
 
BY_CV10_SEAI_Belmullet_10m_WGS84 = arcpy.Raster("D:BY_CV10_SEAI_Belmullet_10m_WGS84")
 
BY_KRY10_01_Dublin_10m_WGS84 = arcpy.Raster("D:BY_KRY10_01_Dublin_10m_WGS84")
 
BY_KRY10_02_Kinsale_10m_WGS84 = arcpy.Raster("D:BY_KRY10_02_Kinsale_10m_WGS84")
 
BY_KRY10_03_Clifden_10m_WGS84 = arcpy.Raster("D:BY_KRY10_03_Clifden_10m_WGS84")
 
BY_KRY10_04_Blacksod_10m_WGS84 = arcpy.Raster("D:BY_KRY10_04_Blacksod_10m_WGS84")
 
BY_LiDAR_2010_AchillSound_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_AchillSound_10m_LAT_WGS84")
 
BY_LiDAR_2010_BallyconneelyBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_BallyconneelyBay_10m_LAT_WGS84")
 
BY_LiDAR_2010_Belmullet_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_Belmullet_10m_LAT_WGS84")
 
BY_LiDAR_2010_BertraghboyBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_BertraghboyBay_10m_LAT_WGS84")
 
BY_LiDAR_2010_Blacksod_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_Blacksod_10m_LAT_WGS84")
 
BY_LiDAR_2010_KilkieranBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_KilkieranBay_10m_LAT_WGS84")
 
BY_LiDAR_2010_LoughSwilly_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_LoughSwilly_10m_LAT_WGS84")
 
BY_LiDAR_2010_ManninBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_ManninBay_10m_LAT_WGS84")
 
BY_LiDAR_2010_MulroyBay_10m_LAT_WGS84 = arcpy.Raster("D:BY_LiDAR_2010_MulroyBay_10m_LAT_WGS84")
 
BY_CV11_01_Wicklow_10m_WGS84 = arcpy.Raster("D:BY_CV11_01_Wicklow_10m_WGS84")
 
BY_CV11_02_ShannonEstuary_10m_WGS84 = arcpy.Raster("D:BY_CV11_02_ShannonEstuary_10m_WGS84")
 
BY_CV11_02_Tralee_10m_WGS84 = arcpy.Raster("D:BY_CV11_02_Tralee_10m_WGS84")
 
BY_CV11_03_EastArklow_10m_WGS84 = arcpy.Raster("D:BY_CV11_03_EastArklow_10m_WGS84")
 
BY_CV11_03_WestArklow_10m_WGS84 = arcpy.Raster("D:BY_CV11_03_WestArklow_10m_WGS84")
 
BY_CV11_InisHydro_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_CV11_InisHydro_Dundalk_10m_WGS84")
 
BY_CV11_MESH_Castletownbere_10m_WGS84 = arcpy.Raster("D:BY_CV11_MESH_Castletownbere_10m_WGS84")
 
BY_CV11_MESH_Kenmare_10m_WGS84 = arcpy.Raster("D:BY_CV11_MESH_Kenmare_10m_WGS84")
 
BY_CV11_SEAI_Belmullet_10m_WGS84 = arcpy.Raster("D:BY_CV11_SEAI_Belmullet_10m_WGS84")
 
BY_GEO11_01_DunLaoghaire_10m_WGS84 = arcpy.Raster("D:BY_GEO11_01_DunLaoghaire_10m_WGS84")
 
BY_GEO11_02_WaterfordEstuary_10m_WGS84 = arcpy.Raster("D:BY_GEO11_02_WaterfordEstuary_10m_WGS84")
 
BY_GEO11_03_Wexford_10m_WGS84 = arcpy.Raster("D:BY_GEO11_03_Wexford_10m_WGS84")
 
BY_GEO11_04_Achill_10m_WGS84 = arcpy.Raster("D:BY_GEO11_04_Achill_10m_WGS84")
 
BY_GEO11_05_Burtonport_10m_WGS84 = arcpy.Raster("D:BY_GEO11_05_Burtonport_10m_WGS84")
 
BY_GEO11_06_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_GEO11_06_Dundalk_10m_WGS84")
 
BY_KRY11_01_Waterford_10m_WGS84 = arcpy.Raster("D:BY_KRY11_01_Waterford_10m_WGS84")
 
BY_KRY11_02_Wexford_10m_WGS84 = arcpy.Raster("D:BY_KRY11_02_Wexford_10m_WGS84")
 
BY_KRY11_03_Achill_10m_WGS84 = arcpy.Raster("D:BY_KRY11_03_Achill_10m_WGS84")
 
BY_KRY11_03_Killard_10m_WGS84 = arcpy.Raster("D:BY_KRY11_03_Killard_10m_WGS84")
 
BY_KRY11_04_Blacksod_10m_WGS84 = arcpy.Raster("D:BY_KRY11_04_Blacksod_10m_WGS84")
 
BY_KRY11_05_Burtonport_10m_WGS84 = arcpy.Raster("D:BY_KRY11_05_Burtonport_10m_WGS84")
 
BY_KRY11_06_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_KRY11_06_Dundalk_10m_WGS84")
 
BY_CB12_01_CorkHarbour_10m_WGS84 = arcpy.Raster("D:BY_CB12_01_CorkHarbour_10m_WGS84")
 
BY_CV12_01_EastCoast_North_10m_WGS84 = arcpy.Raster("D:BY_CV12_01_EastCoast_North_10m_WGS84")
 
BY_CV12_01_EastCoast_South_10m_WGS84 = arcpy.Raster("D:BY_CV12_01_EastCoast_South_10m_WGS84")
 
BY_CV12_01_Wicklow_10m_WGS84 = arcpy.Raster("D:BY_CV12_01_Wicklow_10m_WGS84")
 
BY_CV12_02_CodlingBank_10m_WGS84 = arcpy.Raster("D:BY_CV12_02_CodlingBank_10m_WGS84")
 
BY_CV12_02_Lambay_10m_WGS84 = arcpy.Raster("D:BY_CV12_02_Lambay_10m_WGS84")
 
BY_CV12_02_WestKish_10m_WGS84 = arcpy.Raster("D:BY_CV12_02_WestKish_10m_WGS84")
 
BY_CV12_02_WexfordArea1_10m_WGS84 = arcpy.Raster("D:BY_CV12_02_WexfordArea1_10m_WGS84")
 
BY_CV12_02_WexfordArea2_10m_WGS84 = arcpy.Raster("D:BY_CV12_02_WexfordArea2_10m_WGS84")
 
BY_CV12_03_CorkBlock1_10m_WGS84 = arcpy.Raster("D:BY_CV12_03_CorkBlock1_10m_WGS84")
 
BY_CV12_03_CorkBlock2_10m_WGS84 = arcpy.Raster("D:BY_CV12_03_CorkBlock2_10m_WGS84")
 
BY_CV12_03_CorkHarbour_10m_WGS84 = arcpy.Raster("D:BY_CV12_03_CorkHarbour_10m_WGS84")
 
BY_CV12_03_Galway_10m_WGS84 = arcpy.Raster("D:BY_CV12_03_Galway_10m_WGS84")
 
BY_CV12_SEAI_Clare_10m_WGS84 = arcpy.Raster("D:BY_CV12_SEAI_Clare_10m_WGS84")
 
BY_GEO12_01_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_GEO12_01_Dundalk_10m_WGS84")
 
BY_GEO12_02_Killary_10m_WGS84 = arcpy.Raster("D:BY_GEO12_02_Killary_10m_WGS84")
 
BY_GEO12_03_Burtonport_10m_WGS84 = arcpy.Raster("D:BY_GEO12_03_Burtonport_10m_WGS84")
 
BY_GEO12_04_CorkHarbour_10m_WGS84 = arcpy.Raster("D:BY_GEO12_04_CorkHarbour_10m_WGS84")
 
BY_KRY12_01_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_KRY12_01_Dundalk_10m_WGS84")
 
BY_KRY12_02_Bunmahon_10m_WGS84 = arcpy.Raster("D:BY_KRY12_02_Bunmahon_10m_WGS84")
 
BY_KRY12_03_Killary_10m_WGS84 = arcpy.Raster("D:BY_KRY12_03_Killary_10m_WGS84")
 
BY_KRY12_05_CorkHarbour_10m_WGS84 = arcpy.Raster("D:BY_KRY12_05_CorkHarbour_10m_WGS84")
 
BY_CB13_01_Lambay_10m_WGS84 = arcpy.Raster("D:BY_CB13_01_Lambay_10m_WGS84")
 
BY_CB13_02_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_CB13_02_Dundalk_10m_WGS84")
 
BY_CB13_03_Dingle_10m_WGS84 = arcpy.Raster("D:BY_CB13_03_Dingle_10m_WGS84")
 
BY_CB13_04_ShannonEstuary_10m_WGS1984 = arcpy.Raster("D:BY_CB13_04_ShannonEstuary_10m_WGS1984")
 
BY_CB13_05_Clare_10m_WGS84 = arcpy.Raster("D:BY_CB13_05_Clare_10m_WGS84")
 
BY_CV13_01_Area1CorkWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV13_01_Area1CorkWaterford_10m_WGS84")
 
BY_CV13_01_Area2Waterford_10m_WGS84 = arcpy.Raster("D:BY_CV13_01_Area2Waterford_10m_WGS84")
 
BY_CV13_01_Area3Wexford_10m_WGS84 = arcpy.Raster("D:BY_CV13_01_Area3Wexford_10m_WGS84")
 
BY_CV13_01_Area4Cork_10m_WGS84 = arcpy.Raster("D:BY_CV13_01_Area4Cork_10m_WGS84")
 
BY_CV13_02_Area1Cork_10m_WGS84 = arcpy.Raster("D:BY_CV13_02_Area1Cork_10m_WGS84")
 
BY_CV13_02_Area2Cork_10m_WGS84 = arcpy.Raster("D:BY_CV13_02_Area2Cork_10m_WGS84")
 
BY_CV13_02_Area3Cork_10m_WGS84 = arcpy.Raster("D:BY_CV13_02_Area3Cork_10m_WGS84")
 
BY_CV13_02_Area4Cork_10m_WGS84 = arcpy.Raster("D:BY_CV13_02_Area4Cork_10m_WGS84")
 
BY_CV13_AranIslands_10m_WGS84 = arcpy.Raster("D:BY_CV13_AranIslands_10m_WGS84")
 
BY_CV13_NorthCoastAntrim_10m_WGS84 = arcpy.Raster("D:BY_CV13_NorthCoastAntrim_10m_WGS84")
 
BY_CV13_NorthCoastDonegal_10m_WGS84 = arcpy.Raster("D:BY_CV13_NorthCoastDonegal_10m_WGS84")
 
BY_CV13_SEAI1_Clare_10m_WGS84 = arcpy.Raster("D:BY_CV13_SEAI1_Clare_10m_WGS84")
 
BY_CV13_SEAI2_Clare_10m_WGS84 = arcpy.Raster("D:BY_CV13_SEAI2_Clare_10m_WGS84")
 
BY_CV13_SEAI3_Clare_10m_WGS84 = arcpy.Raster("D:BY_CV13_SEAI3_Clare_10m_WGS84")
 
BY_CV13_SEAI4_Clare_10m_WGS84 = arcpy.Raster("D:BY_CV13_SEAI4_Clare_10m_WGS84")
 
BY_CV13_SEAI4_Galway_10m_WGS84 = arcpy.Raster("D:BY_CV13_SEAI4_Galway_10m_WGS84")
 
BY_CV13_West_Aran_Islands_10m_WGS84 = arcpy.Raster("D:BY_CV13_West_Aran_Islands_10m_WGS84")
 
BY_GEO13_01_Lambay_10m_WGS84 = arcpy.Raster("D:BY_GEO13_01_Lambay_10m_WGS84")
 
BY_GEO13_02_Dundalk_10m_WGS84 = arcpy.Raster("D:BY_GEO13_02_Dundalk_10m_WGS84")
 
BY_GEO13_03_DingleBay_10m_WGS84 = arcpy.Raster("D:BY_GEO13_03_DingleBay_10m_WGS84")
 
BY_GEO13_04_Castletownbere_10m_WGS84 = arcpy.Raster("D:BY_GEO13_04_Castletownbere_10m_WGS84")
 
BY_GEO13_05_ShannonEstuary_10m_WGS84 = arcpy.Raster("D:BY_GEO13_05_ShannonEstuary_10m_WGS84")
 
BY_KRY13_03_Fastnet_10m_WGS84 = arcpy.Raster("D:BY_KRY13_03_Fastnet_10m_WGS84")
 
BY_KRY13_04_Dingle_10m_WGS84 = arcpy.Raster("D:BY_KRY13_04_Dingle_10m_WGS84")
 
BY_KRY13_05_ShannonEstuary_10m_WGS84 = arcpy.Raster("D:BY_KRY13_05_ShannonEstuary_10m_WGS84")
 
BY_CB14_01_LoughSwilly_10m_WGS84 = arcpy.Raster("D:BY_CB14_01_LoughSwilly_10m_WGS84")
 
BY_CB14_02_DonegalBay_10m_WGS84 = arcpy.Raster("D:BY_CB14_02_DonegalBay_10m_WGS84")
 
BY_CB14_03_Blacksod_10m_WGS84 = arcpy.Raster("D:BY_CB14_03_Blacksod_10m_WGS84")
 
BY_CB14_04_Killary_10m_WGS84 = arcpy.Raster("D:BY_CB14_04_Killary_10m_WGS84")
 
BY_CB14_05_Kerry_10m_WGS84 = arcpy.Raster("D:BY_CB14_05_Kerry_10m_WGS84")
 
BY_CB14_06_Louth_10m_WGS84 = arcpy.Raster("D:BY_CB14_06_Louth_10m_WGS84")
 
BY_CV14_01_AranIslands_10m_WGS84 = arcpy.Raster("D:BY_CV14_01_AranIslands_10m_WGS84")
 
BY_CV14_01_GalwayBay_10m_WGS84 = arcpy.Raster("D:BY_CV14_01_GalwayBay_10m_WGS84")
 
BY_CV14_01_GalwayBayEast_10m_WGS84 = arcpy.Raster("D:BY_CV14_01_GalwayBayEast_10m_WGS84")
 
BY_CV14_01_GalwayBayTestSite_10m_WGS84 = arcpy.Raster("D:BY_CV14_01_GalwayBayTestSite_10m_WGS84")
 
BY_CV14_02_GalwayBay_10m_WGS84 = arcpy.Raster("D:BY_CV14_02_GalwayBay_10m_WGS84")
 
BY_CV14_02_GalwayBayOuter_10m_WGS84 = arcpy.Raster("D:BY_CV14_02_GalwayBayOuter_10m_WGS84")
 
BY_CV14_02_Killary_10m_WGS84 = arcpy.Raster("D:BY_CV14_02_Killary_10m_WGS84")
 
BY_CV14_02_TraleeBay_10m_WGS84 = arcpy.Raster("D:BY_CV14_02_TraleeBay_10m_WGS84")
 
BY_CV14_03_CorkLusitania_10m_WGS84 = arcpy.Raster("D:BY_CV14_03_CorkLusitania_10m_WGS84")
 
BY_CV14_03_CorkSouthWest_10m_WGS84 = arcpy.Raster("D:BY_CV14_03_CorkSouthWest_10m_WGS84")
 
BY_CV14_SEAI_AranIslands_10m_WGS84 = arcpy.Raster("D:BY_CV14_SEAI_AranIslands_10m_WGS84")
 
BY_CV14_SEAI_Clare_10m_WGS84 = arcpy.Raster("D:BY_CV14_SEAI_Clare_10m_WGS84")
 
BY_CV14_SEAI_ClareCoast_10m_WGS84 = arcpy.Raster("D:BY_CV14_SEAI_ClareCoast_10m_WGS84")
 
BY_GEO14_01_Blacksod_10m_WGS84 = arcpy.Raster("D:BY_GEO14_01_Blacksod_10m_WGS84")
 
BY_GEO14_02_Killary_10m_WGS84 = arcpy.Raster("D:BY_GEO14_02_Killary_10m_WGS84")
 
BY_GEO14_03_Tralee_10m_WGS84 = arcpy.Raster("D:BY_GEO14_03_Tralee_10m_WGS84")
 
BY_GEO14_04_Louth_10m_WGS84 = arcpy.Raster("D:BY_GEO14_04_Louth_10m_WGS84")
 
BY_KRY14_01_LoughSwilly_10m_WGS84 = arcpy.Raster("D:BY_KRY14_01_LoughSwilly_10m_WGS84")
 
BY_KRY14_02_DonegalBay_10m_WGS84 = arcpy.Raster("D:BY_KRY14_02_DonegalBay_10m_WGS84")
 
BY_KRY14_03_Blacksod_10m_WGS84 = arcpy.Raster("D:BY_KRY14_03_Blacksod_10m_WGS84")
 
BY_KRY14_04_Killary_10m_WGS84 = arcpy.Raster("D:BY_KRY14_04_Killary_10m_WGS84")
 
BY_KRY14_05_TraleeBay_10m_WGS84 = arcpy.Raster("D:BY_KRY14_05_TraleeBay_10m_WGS84")
 
BY_KRY14_06_LoughFoyle_10m_WGS84 = arcpy.Raster("D:BY_KRY14_06_LoughFoyle_10m_WGS84")
 
BY_GEO15_01_BannowBay_10m_WGS84 = arcpy.Raster("D:BY_GEO15_01_BannowBay_10m_WGS84")
 
BY_GEO15_02_YoughalDungarvan_10m_WGS84 = arcpy.Raster("D:BY_GEO15_02_YoughalDungarvan_10m_WGS84")
 
BY_GEO15_03_Rosslare_10m_WGS84 = arcpy.Raster("D:BY_GEO15_03_Rosslare_10m_WGS84")
 
BY_GEO15_04_IrishSeaBoyneEstuary_10m_WGS84 = arcpy.Raster("D:BY_GEO15_04_IrishSeaBoyneEstuary_10m_WGS84")
 
BY_KRY15_01_BannowBay_10m_WGS84 = arcpy.Raster("D:BY_KRY15_01_BannowBay_10m_WGS84")
 
BY_KRY15_02_YoughalDungarvan_10m_WGS84 = arcpy.Raster("D:BY_KRY15_02_YoughalDungarvan_10m_WGS84")
 
BY_KRY15_03_Rosslare_10m_WGS84 = arcpy.Raster("D:BY_KRY15_03_Rosslare_10m_WGS84")
 
BY_KRY15_04_IrishSeaDrogheda_10m_WGS84 = arcpy.Raster("D:BY_KRY15_04_IrishSeaDrogheda_10m_WGS84")
 
BY_KRY15_05_LoughFoyle_10m_WGS84 = arcpy.Raster("D:BY_KRY15_05_LoughFoyle_10m_WGS84")
 
BY_TON15_01_BannowBay_10m_WGS84 = arcpy.Raster("D:BY_TON15_01_BannowBay_10m_WGS84")
 
BY_TON15_02_YoughalDungarvan_10m_WGS84 = arcpy.Raster("D:BY_TON15_02_YoughalDungarvan_10m_WGS84")
 
BY_TON15_03_Rosslare_10m_WGS84 = arcpy.Raster("D:BY_TON15_03_Rosslare_10m_WGS84")
 
BY_TON15_04_IrishSeaDrogheda_10m_WGS84 = arcpy.Raster("D:BY_TON15_04_IrishSeaDrogheda_10m_WGS84")
 
BY_CE16_01_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CE16_01_CelticSeaSouth_10m_WGS84")
 
BY_CLN16_01_IrishSea_10m_WGS84 = arcpy.Raster("D:BY_CLN16_01_IrishSea_10m_WGS84")
 
BY_CV16_01_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV16_01_CelticSeaCork_10m_WGS84")
 
BY_CV16_02_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV16_02_CelticSeaCork_10m_WGS84")
 
BY_CV16_03_Belmullet_10m_WGS84 = arcpy.Raster("D:BY_CV16_03_Belmullet_10m_WGS84")
 
BY_CV16_03_SEAI_Belmullet_10m_WGS84 = arcpy.Raster("D:BY_CV16_03_SEAI_Belmullet_10m_WGS84")
 
BY_CV16_04_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV16_04_CelticSeaWaterford_10m_WGS84")
 
BY_CV16_04_CelticSeaWestCork_10m_WGS84 = arcpy.Raster("D:BY_CV16_04_CelticSeaWestCork_10m_WGS84")
 
BY_CV16_05_CelticSeaWexford_10m_WGS84 = arcpy.Raster("D:BY_CV16_05_CelticSeaWexford_10m_WGS84")
 
BY_GEO16_01_Wicklow_10m_WGS84 = arcpy.Raster("D:BY_GEO16_01_Wicklow_10m_WGS84")
 
BY_GEO16_02_Arklow_10m_WGS84 = arcpy.Raster("D:BY_GEO16_02_Arklow_10m_WGS84")
 
BY_GEO16_03_Arklow_10m_WGS84 = arcpy.Raster("D:BY_GEO16_03_Arklow_10m_WGS84")
 
BY_GEO16_04_Kenmare_10m_WGS84 = arcpy.Raster("D:BY_GEO16_04_Kenmare_10m_WGS84")
 
BY_HM16_01_AranIslands_10m_WGS84 = arcpy.Raster("D:BY_HM16_01_AranIslands_10m_WGS84")
 
BY_KRY16_01_CodlingBank_10m_WGS84 = arcpy.Raster("D:BY_KRY16_01_CodlingBank_10m_WGS84")
 
BY_KRY16_02_Arklow_10m_WGS84 = arcpy.Raster("D:BY_KRY16_02_Arklow_10m_WGS84")
 
BY_KRY16_03_Arklow_10m_WGS84 = arcpy.Raster("D:BY_KRY16_03_Arklow_10m_WGS84")
 
BY_TON16_01_DublinWicklow_10m_WGS84 = arcpy.Raster("D:BY_TON16_01_DublinWicklow_10m_WGS84")
 
BY_TON16_02_WicklowWexford_10m_WGS84 = arcpy.Raster("D:BY_TON16_02_WicklowWexford_10m_WGS84")
 
BY_TON16_03_WexfordNorth_10m_WGS84 = arcpy.Raster("D:BY_TON16_03_WexfordNorth_10m_WGS84")
 
BY_CE17_01_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CE17_01_CelticSeaSouth_10m_WGS84")
 
BY_CE17_02_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CE17_02_CelticSeaSouth_10m_WGS84")
 
BY_CV17_01_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV17_01_CelticSeaWaterford_10m_WGS84")
 
BY_CV17_02_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV17_02_CelticSeaWaterford_10m_WGS84")
 
BY_CV17_03_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV17_03_CelticSeaWaterford_10m_WGS84")
 
BY_CV17_04_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV17_04_CelticSeaCork_10m_WGS84")
 
BY_CV17_04_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV17_04_CelticSeaWaterford_10m_WGS84")
 
BY_GEO17_01_Baldoyle_10m_WGS84 = arcpy.Raster("D:BY_GEO17_01_Baldoyle_10m_WGS84")
 
BY_GEO17_02_Wexford_10m_WGS84 = arcpy.Raster("D:BY_GEO17_02_Wexford_10m_WGS84")
 
BY_GEO17_03_BrandonBay_10m_WGS84 = arcpy.Raster("D:BY_GEO17_03_BrandonBay_10m_WGS84")
 
BY_KRY17_01_Skerries_10m_WGS84 = arcpy.Raster("D:BY_KRY17_01_Skerries_10m_WGS84")
 
BY_KRY17_02_CahorePointWexford_10m_WGS984 = arcpy.Raster("D:BY_KRY17_02_CahorePointWexford_10m_WGS984")
 
BY_KRY17_02_CarnsorePoint_10m_WGS84 = arcpy.Raster("D:BY_KRY17_02_CarnsorePoint_10m_WGS84")
 
BY_KRY17_02_Saltees_10m_WGS84 = arcpy.Raster("D:BY_KRY17_02_Saltees_10m_WGS84")
 
BY_LIR17_01_Wexford_10m_WGS84 = arcpy.Raster("D:BY_LIR17_01_Wexford_10m_WGS84")
 
BY_LIR17_02_DublinBay_10m_WGS84 = arcpy.Raster("D:BY_LIR17_02_DublinBay_10m_WGS84")
 
BY_MAL17_01_SaintGeorgesChannel_10m_WGS84 = arcpy.Raster("D:BY_MAL17_01_SaintGeorgesChannel_10m_WGS84")
 
BY_MAL17_01_Wexford_10m_WGS84 = arcpy.Raster("D:BY_MAL17_01_Wexford_10m_WGS84")
 
BY_CE18_01_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CE18_01_CelticSeaSouth_10m_WGS84")
 
BY_COR18_01_IrishSea_10m_WGS84 = arcpy.Raster("D:BY_COR18_01_IrishSea_10m_WGS84")
 
BY_CV18_01_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV18_01_CelticSeaWaterford_10m_WGS84")
 
BY_CV18_02_CelticSeaCork_North_10m_WGS84 = arcpy.Raster("D:BY_CV18_02_CelticSeaCork_North_10m_WGS84")
 
BY_CV18_02_CelticSeaCork_South_10m_WGS84 = arcpy.Raster("D:BY_CV18_02_CelticSeaCork_South_10m_WGS84")
 
BY_CV18_03_CelticSeaNorth_10m_WGS84 = arcpy.Raster("D:BY_CV18_03_CelticSeaNorth_10m_WGS84")
 
BY_CV18_03_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CV18_03_CelticSeaSouth_10m_WGS84")
 
BY_GEO18_01_Wexford_10m_WGS84 = arcpy.Raster("D:BY_GEO18_01_Wexford_10m_WGS84")
 
BY_GEO18_02_CorkWaterford_10m_WGS84 = arcpy.Raster("D:BY_GEO18_02_CorkWaterford_10m_WGS84")
 
BY_KRY18_01_Wexford_10m_WGS84 = arcpy.Raster("D:BY_KRY18_01_Wexford_10m_WGS84")
 
BY_KRY18_02_Ardmore_10m_WGS84 = arcpy.Raster("D:BY_KRY18_02_Ardmore_10m_WGS84")
 
BY_KRY18_02_Ballycotton_10m_WGS84 = arcpy.Raster("D:BY_KRY18_02_Ballycotton_10m_WGS84")
 
BY_KRY18_02_CelticSea_10m_WGS84 = arcpy.Raster("D:BY_KRY18_02_CelticSea_10m_WGS84")
 
BY_KRY18_02_Courtmacsherry_10m_WGS84 = arcpy.Raster("D:BY_KRY18_02_Courtmacsherry_10m_WGS84")
 
BY_KRY18_02_Youghal_10m_WGS84 = arcpy.Raster("D:BY_KRY18_02_Youghal_10m_WGS84")
 
BY_KRY18_03_AngleseyWales_10m_WGS84 = arcpy.Raster("D:BY_KRY18_03_AngleseyWales_10m_WGS84")
 
BY_KRY18_04_CelticSeaCorkWaterford_10m_WGS84 = arcpy.Raster("D:BY_KRY18_04_CelticSeaCorkWaterford_10m_WGS84")
 
BY_KRY18_05_SmerwickHarbour_10m_WGS84 = arcpy.Raster("D:BY_KRY18_05_SmerwickHarbour_10m_WGS84")
 
BY_LIR18_02_CelticSeaWaterfordWexford_10m_WGS84 = arcpy.Raster("D:BY_LIR18_02_CelticSeaWaterfordWexford_10m_WGS84")
 
BY_LIR18_03_CelticSea_10m_WGS84 = arcpy.Raster("D:BY_LIR18_03_CelticSea_10m_WGS84")
 
BY_LIR18_03_Cork_10m_WGS84 = arcpy.Raster("D:BY_LIR18_03_Cork_10m_WGS84")
 
BY_LIR18_03_CorkWaterford_10m_WGS84 = arcpy.Raster("D:BY_LIR18_03_CorkWaterford_10m_WGS84")
 
BY_MAL18_02_CelticSeaCorkWaterford_10m_WGS84 = arcpy.Raster("D:BY_MAL18_02_CelticSeaCorkWaterford_10m_WGS84")
 
BY_CE19_01_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CE19_01_CelticSeaCork_10m_WGS84")
 
BY_CV19_01_CelticSeaEast_10m_WGS84 = arcpy.Raster("D:BY_CV19_01_CelticSeaEast_10m_WGS84")
 
BY_CV19_01_CelticSeaNorth_10m_WGS84 = arcpy.Raster("D:BY_CV19_01_CelticSeaNorth_10m_WGS84")
 
BY_CV19_01_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CV19_01_CelticSeaSouth_10m_WGS84")
 
BY_CV19_02_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV19_02_CelticSeaCork_10m_WGS84")
 
BY_CV19_02_CelticSeaSouth_10m_WGS84 = arcpy.Raster("D:BY_CV19_02_CelticSeaSouth_10m_WGS84")
 
BY_CV19_02_CelticSeaWaterford_10m_WGS84 = arcpy.Raster("D:BY_CV19_02_CelticSeaWaterford_10m_WGS84")
 
BY_CV19_03_CelticSeaCork_10m_WGS84_2_ = arcpy.Raster("D:BY_CV19_03_CelticSeaCork_10m_WGS84")
 
BY_CV19_04_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV19_04_CelticSeaCork_10m_WGS84")
 
BY_CV19_011_ClewBay_10m_WGS84 = arcpy.Raster("D:BY_CV19_011_ClewBay_10m_WGS84")
 
BY_GEO19_03_RoaringwaterBay_10m_WGS84 = arcpy.Raster("D:BY_GEO19_03_RoaringwaterBay_10m_WGS84")
 
BY_GEO19_04_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_GEO19_04_CelticSeaCork_10m_WGS84")
 
BY_GEO19_05_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_GEO19_05_CelticSeaCork_10m_WGS84")
 
BY_KRY19_01_IrishSeaDundalk_10m_WGS84 = arcpy.Raster("D:BY_KRY19_01_IrishSeaDundalk_10m_WGS84")
 
BY_KRY19_02_AngleseyWales_10m_WGS84 = arcpy.Raster("D:BY_KRY19_02_AngleseyWales_10m_WGS84")
 
BY_KRY19_03_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_KRY19_03_CelticSeaCork_10m_WGS84")
 
BY_KRY19_04_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_KRY19_04_CelticSeaCork_10m_WGS84")
 
BY_KRY19_05_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_KRY19_05_CelticSeaCork_10m_WGS84")
 
BY_LIR19_02_Cork_10m_WGS84 = arcpy.Raster("D:BY_LIR19_02_Cork_10m_WGS84")
 
BY_LIR19_03_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_LIR19_03_CelticSeaCork_10m_WGS84")
 
BY_LIR19_03_WestCork_10m_WGS84 = arcpy.Raster("D:BY_LIR19_03_WestCork_10m_WGS84")
 
BY_LIR19_04_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_LIR19_04_CelticSeaCork_10m_WGS84")
 
BY_LIR19_05_CorkWaterford_10m_WGS84 = arcpy.Raster("D:BY_LIR19_05_CorkWaterford_10m_WGS84")
 
BY_LIR19_06_Cork_10m_WGS84 = arcpy.Raster("D:BY_LIR19_06_Cork_10m_WGS84")
 
BY_LIR19_07_Cork_10m_WGS84 = arcpy.Raster("D:BY_LIR19_07_Cork_10m_WGS84")
 
BY_MAL19_01_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_MAL19_01_CelticSeaCork_10m_WGS84")
 
BY_MAL19_02_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_MAL19_02_CelticSeaCork_10m_WGS84")
 
BY_MAL19_03_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_MAL19_03_CelticSeaCork_10m_WGS84")
 
BY_MAL19_04_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_MAL19_04_CelticSeaCork_10m_WGS84")
 
BY_MAL19_05_CorkOffshore_10m_WGS84 = arcpy.Raster("D:BY_MAL19_05_CorkOffshore_10m_WGS84")
 
BY_CE20_01_CelticShelf_10m_WGS84 = arcpy.Raster("D:BY_CE20_01_CelticShelf_10m_WGS84")
 
BY_CE20_02_CelticShelf_10m_WGS84 = arcpy.Raster("D:BY_CE20_02_CelticShelf_10m_WGS84")
 
BY_CV20_01_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV20_01_CelticSeaCork_10m_WGS84")
 
BY_CV20_02_AranGrounds_10m_WGS84 = arcpy.Raster("D:BY_CV20_02_AranGrounds_10m_WGS84")
 
BY_CV20_02_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV20_02_CelticSeaCork_10m_WGS84")
 
BY_CV20_02_Kerry_10m_WGS84 = arcpy.Raster("D:BY_CV20_02_Kerry_10m_WGS84")
 
BY_CV20_006_MalinSea_10m_WGS84 = arcpy.Raster("D:BY_CV20_006_MalinSea_10m_WGS84")
 
BY_KRY20_02_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_KRY20_02_CelticSeaCork_10m_WGS84")
 
BY_KRY20_04_Kerry_10m_WGS84 = arcpy.Raster("D:BY_KRY20_04_Kerry_10m_WGS84")
 
BY_KRY20_05_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_KRY20_05_CelticSeaCork_10m_WGS84")
 
BY_LIR20_02_IrishSea_10m_WGS84 = arcpy.Raster("D:BY_LIR20_02_IrishSea_10m_WGS84")
 
BY_LIR20_08_DalkeyIsland_10m_WGS84 = arcpy.Raster("D:BY_LIR20_08_DalkeyIsland_10m_WGS84")
 
BY_MAL20_01_IrishSea_10m_WGS84 = arcpy.Raster("D:BY_MAL20_01_IrishSea_10m_WGS84")
 
BY_CV21_01_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV21_01_CelticSeaCork_10m_WGS84")
 
BY_CV21_02_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV21_02_CelticSeaCork_10m_WGS84")
 
BY_CV21_03_CelticSeaCork_10m_WGS84 = arcpy.Raster("D:BY_CV21_03_CelticSeaCork_10m_WGS84")
 
BathymetryMosaicDatabase_gdb = "D:BathymetryMosaicDatabase.gdb"
 
# Process: Build Pyramids (Build Pyramids) (management)
bathymetryCoverage10m_2_ = arcpy.management.BuildPyramids(in_raster_dataset=bathymetry10mCoverage, pyramid_level=-1, SKIP_FIRST="NONE", resample_technique="BILINEAR", compression_type="DEFAULT", compression_quality=75, skip_existing="OVERWRITE")[0]
bathymetryCoverage10m_2_ = arcpy.Raster(bathymetryCoverage10m_2_)
if __name__ == '__main__':
# Global Environment settings
with arcpy.EnvManager(scratchWorkspace=r"Marine.gdb", 
workspace=r"Marine.gdb"):
 
Model11()
</stepDesc>
</prcStep>
</dataLineage>
<report dimension="" type="DQConcConsis">
<measDesc>Indication that an item complies with the rules of the relevant conceptual schema</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>INSPIRE Metadata Implementing Rules: Technical Guidelines based on EN ISO 19115 and EN ISO 19119</resTitle>
<resAltTitle>INSPIRE Metadata IR v1.3</resAltTitle>
<collTitle>INSPIRE Metadata IR</collTitle>
<date>
<pubDate>2013-11-06T00:00:00</pubDate>
</date>
</conSpec>
<conExpl>According to Article 5(1) of Directive 2007/2/EC, Member States shall ensure that metadata are created for the spatial data sets and services corresponding to the themes listed in Annexes I, II and III, and that those metadata are kept up to date. According to Article 5(4) of Directive 2007/2/EC, Implementing Rules shall be adopted taking account of relevant, existing international standards and user requirements. In the context of metadata for spatial data and spatial data services, the standards EN ISO 19115, EN ISO 19119, and ISO 15836 (Dublin Core) have been identified as important standards.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Conceptual schema compliance</measName>
<evalProc>
<resTitle>Directive 2007/2/EC of the European Parliament and of the Council of 14 March 2007 establishing an Infrastructure for Spatial Information in the European Community (INSPIRE)</resTitle>
<resAltTitle>INSPIRE Directive</resAltTitle>
<collTitle>INSPIRE</collTitle>
<date>
<pubDate>2007-03-14T00:00:00</pubDate>
</date>
</evalProc>
</report>
<report dimension="" type="DQConcConsis">
<measDesc>Indication that an item complies with the rules of the relevant conceptual schema</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>INSPIRE Data Specification on Elevation - Technical Guidelines</resTitle>
<resAltTitle>INSPIRE Data Specification for the spatial data theme Elevation</resAltTitle>
<collTitle>INSPIRE Elevation</collTitle>
<date>
<pubDate>2013-12-10T00:00:00</pubDate>
</date>
</conSpec>
<conExpl>The Elevation of a terrain surface, whether land based or bathymetric in nature, is one of the most important descriptors of the Earth‘s morphology. Recognising the specific role that elevation may play in engineering and spatial analysis, the related data theme has been included in Annex II of INSPIRE. The Elevation data theme includes digital elevation models for land, ice and ocean surfaces both for terrestrial elevation and bathymetry, as well as shorelines.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Conceptual schema compliance</measName>
<evalProc>
<resTitle>Directive 2007/2/EC of the European Parliament and of the Council of 14 March 2007 establishing an Infrastructure for Spatial Information in the European Community (INSPIRE)</resTitle>
<resAltTitle>INSPIRE Directive</resAltTitle>
<collTitle>INSPIRE </collTitle>
<date>
<pubDate>2007-03-14T00:00:00</pubDate>
</date>
</evalProc>
</report>
<report dimension="" type="DQDomConsis">
<measDesc>Indication of if an item is conforming to its value domain (correctness indicator)</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>ArcGIS Raster</resTitle>
<resAltTitle>Raster</resAltTitle>
<collTitle>Raster</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</conSpec>
<conExpl>Valid value domains for each field in terms of length, data type and content.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Value domain conformance</measName>
<evalProc>
<resTitle>Geographical Information Systems (GIS) Raster Data Model</resTitle>
<resAltTitle>GIS Raster Data Model</resAltTitle>
<collTitle>Raster</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</evalProc>
</report>
<report dimension="" type="DQFormConsis">
<measDesc>indication that items are stored in conflict with the physical structure of the data set</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>OpenGIS® Web Map Server Implementation Specification</resTitle>
<resAltTitle>Web Map Service (WMS)</resAltTitle>
<collTitle>WMS</collTitle>
<date>
<pubDate>2006-03-15T00:00:00</pubDate>
</date>
</conSpec>
<conExpl>A Web Map Service (WMS) is a standard protocol developed by the Open Geospatial Consortium in 1999 and last updated in 2006 for serving georeferenced map images over the Internet. These images are typically produced by a map server from data provided by a GIS database.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>physical structure conflicts</measName>
<evalProc>
<resTitle>Open Geospatial Consortium (OpenGIS) Standards</resTitle>
<resAltTitle>OGC® Standards</resAltTitle>
<collTitle>OGC</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
<citOnlineRes>
<linkage>http://www.opengeospatial.org/standards</linkage>
<protocol>text/html</protocol>
<appProfile>OGC® Standards and Supporting Documents</appProfile>
<orName>OGC® Standards and Supporting Documents</orName>
<orDesc>Descriptions of OGC standards</orDesc>
<orFunct>
<OnFunctCd value="002"/>
</orFunct>
</citOnlineRes>
</evalProc>
</report>
<report dimension="horizontal" type="DQGridDataPosAcc">
<measDesc>Closeness of reported coordinate values to values accepted as or being true
</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated
</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>Positioning - Total Horizontal Uncertainty</resTitle>
<resAltTitle>Positioning THU</resAltTitle>
<collTitle>THU</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</conSpec>
<conExpl>The uncertainty of a position is the uncertainty at the position of the sounding or feature within the geodetic reference frame. Positions should be referenced to a geocentric reference frame based on the International Terrestrial Reference System (ITRS) e.g. WGS84. If, exceptionally, positions are referenced to the local horizontal datum, this datum should be tied to a geocentric reference frame based on ITRF.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Error indicator</measName>
<evalProc>
<resTitle>International Hydrographic Organization (IHO) Standards for Hydrographic Surveys</resTitle>
<resAltTitle>IHO S-44 Standards for Hydrographic Surveys</resAltTitle>
<collTitle>IHO S-44 </collTitle>
<date>
<pubDate>2008-02-29T00:00:00</pubDate>
</date>
</evalProc>
</report>
<report dimension="vertical" type="DQGridDataPosAcc">
<measDesc>Closeness of reported coordinate values to values accepted as or being true</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>Positioning - Total Vertical Uncertainty (Depths)</resTitle>
<resAltTitle>Positioning TVU</resAltTitle>
<collTitle>TVU</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</conSpec>
<conExpl>Vertical uncertainty is to be understood as the uncertainty of the reduced depths. In determining the vertical uncertainty the sources of individual uncertainties need to be quantified. All uncertainties should be combined statistically to obtain a total vertical uncertainty (TVU).</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Error indicator</measName>
<evalProc>
<resTitle>International Hydrographic Organization (IHO) Standards for Hydrographic Surveys</resTitle>
<resAltTitle>IHO S-44 Standards for Hydrographic Surveys</resAltTitle>
<collTitle>IHO S-44 </collTitle>
<date>
<pubDate>2008-02-29T00:00:00</pubDate>
</date>
</evalProc>
</report>
<report dimension="" type="DQThemClassCor">
<measDesc>Count of the incorrectly classified features in attribute table</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<QuanResult>
<quanValType>CharacterString</quanValType>
<quanValUnit>
<UOM>
<unitSymbol>[iU]</unitSymbol>
</UOM>
</quanValUnit>
<errStat>99.9%</errStat>
<quanVal>0</quanVal>
</QuanResult>
</measResult>
<measName>Number of incorrecty classified features</measName>
<evalProc>
<resTitle>ArcGIS Mosaic Dataset</resTitle>
<resAltTitle>Mosaic Dataset</resAltTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</evalProc>
</report>
<report dimension="vertical" type="DQQuanAttAcc">
<measDesc>Half length of the interval defined by an upper and a lower limit, in which the true value for the quantitative attribute lies with probability 99.8%.</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>Bathymetric Attribution Model (BAM)</resTitle>
<resAltTitle>Bathymetric Attribution Model (BAM)</resAltTitle>
<collTitle>BAM</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</conSpec>
<conExpl>Bathymetric Attribution Model requires metadata that should include: the model resolution; the computation method; the underlying data density; uncertainty estimate/uncertainty surface for the model; and a description of the underlying data.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Attribute value uncertainty at 99.8% significance level</measName>
<evalProc>
<resTitle>International Hydrographic Organization Standards for Hydrographic Surveys (S-44)</resTitle>
<resAltTitle>IHO Standards for Hydrographic Surveys (S-44)</resAltTitle>
<collTitle>IHO S-44</collTitle>
<date>
<pubDate>2008-02-29T00:00:00</pubDate>
</date>
</evalProc>
</report>
<report dimension="vertical" type="DQAccTimeMeas">
<measDesc>Correctness of the temporal references of an item (reporting of error in time measurement)</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>Survey Time Period</resTitle>
<resAltTitle>Survey Time Period</resAltTitle>
<collTitle>Survey Time Period</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</conSpec>
<conExpl>Coordinated Universal Time (abbreviated to UTC) is the primary time standard by which the world regulates clocks and time. It is within about 1 second of mean solar time at 0° longitude, and is not adjusted for daylight saving time. In some countries where English is spoken, the term Greenwich Mean Time (GMT) is often used as a synonym for UTC and predates UTC by nearly 300 years. All timestamps associated with multi-beam echosounder measure accuracy accordingly.</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>time accuracy at 99.8% significance level</measName>
<evalProc>
<resTitle>Coordinated Universal Time (UTC) Primary Standard Time</resTitle>
<resAltTitle>Coordinated Universal Time (UTC) </resAltTitle>
<collTitle>UTC</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</evalProc>
</report>
<report dimension="" type="DQTempValid">
<measDesc>indication of if an item is not in conformance with its value domain</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated
</evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>YYYY-MM-DD</resTitle>
<resAltTitle>YYYY-MM-DD</resAltTitle>
<collTitle>YYYY-MM-DD</collTitle>
<date>
<reviseDate>2019-09-06T00:00:00</reviseDate>
</date>
</conSpec>
<conExpl>Calendar date representations are in the form shown in the adjacent box. [YYYY] indicates a four-digit year, 0000 through 9999. [MM] indicates a two-digit month of the year, 01 through 12. [DD] indicates a two-digit day of that month, 01 through 31. For example, "12 June 2013" may be represented as "2013-06-12"</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Value domain non-conformance</measName>
<evalProc>
<resTitle>International Organization for Standardization (ISO) 8601-1 Date and Time Format</resTitle>
<resAltTitle>ISO 8601-1:2019</resAltTitle>
<collTitle>ISO 8601</collTitle>
<date>
<reviseDate>2019-01-01T00:00:00</reviseDate>
</date>
</evalProc>
</report>
<report dimension="vertical" type="DQDomConsis">
<measDesc>Data is in conformance with the value domain</measDesc>
<evalMethDesc>method of evaluating the quality of a dataset based on inspection of items within the dataset, where all data required is internal to the dataset being evaluated </evalMethDesc>
<evalMethType>
<EvalMethTypeCd value="001"/>
</evalMethType>
<measResult>
<ConResult>
<conSpec>
<resTitle>ArcGIS Bathymetry Product</resTitle>
<resAltTitle>ArcGIS BY</resAltTitle>
<collTitle>ArcGIS Raster</collTitle>
<date>
<pubDate>2022-05-20T11:00:00</pubDate>
</date>
</conSpec>
<conExpl>Bathymetry data product</conExpl>
<conPass>1</conPass>
</ConResult>
</measResult>
<measName>Indication of if an item is conforming to its value domain</measName>
</report>
</dqInfo>
<refSysInfo>
<RefSystem dimension="">
<refSysID>
<identAuth>
<resTitle>European Petroleum Survey Group</resTitle>
<resAltTitle>EPSG</resAltTitle>
<date>
<reviseDate>2007-08-27T00:00:00</reviseDate>
</date>
<collTitle>EPSG Code</collTitle>
</identAuth>
<identCode code="https://epsg.io/4326"/>
<idCodeSpace Sync="TRUE">EPSG</idCodeSpace>
<idVersion Sync="TRUE">6.14(3.0.1)</idVersion>
</refSysID>
</RefSystem>
</refSysInfo>
<refSysInfo>
<RefSystem dimension="">
<refSysID>
<identAuth>
<resTitle>European Petroleum Survey Group</resTitle>
<resAltTitle>EPSG</resAltTitle>
<date>
<reviseDate>2007-08-27T00:00:00</reviseDate>
</date>
<collTitle>EPSG Code</collTitle>
</identAuth>
<identCode code="https://epsg.io/5861"/>
<idCodeSpace Sync="TRUE">EPSG</idCodeSpace>
<idVersion Sync="TRUE">6.14(3.0.1)</idVersion>
</refSysID>
</RefSystem>
</refSysInfo>
<dataSetURI>EL_GridCoverage_IE_GSI-MI_Bathymetry_bathymetry10mMosaic</dataSetURI>
<spdoinfo>
<rastinfo>
<rasttype Sync="TRUE">Pixel</rasttype>
<rowcount Sync="TRUE">66752</rowcount>
<colcount Sync="TRUE">66571</colcount>
<rastxsz Sync="TRUE">0.000117</rastxsz>
<rastysz Sync="TRUE">0.000117</rastysz>
<rastbpp Sync="TRUE">32</rastbpp>
<vrtcount Sync="TRUE">1</vrtcount>
<rastorig Sync="TRUE">Upper Left</rastorig>
<rastcmap Sync="TRUE">FALSE</rastcmap>
<rastcomp Sync="TRUE">LZ77</rastcomp>
<rastband Sync="TRUE">1</rastband>
<rastdtyp Sync="TRUE">pixel codes</rastdtyp>
<rastifor Sync="TRUE">FGDBR</rastifor>
<rastplyr Sync="TRUE">TRUE</rastplyr>
</rastinfo>
</spdoinfo>
<spref>
<horizsys>
<planar>
<planci>
<plance Sync="TRUE">row and column</plance>
<coordrep>
<absres Sync="TRUE">0.000117</absres>
<ordres Sync="TRUE">0.000117</ordres>
</coordrep>
</planci>
</planar>
</horizsys>
</spref>
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