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<idPurp>A polygon dataset showing the area of land draining directly to each confluence point on the baseline river network (1:50,000), i.e. where two or more rivers, each with a catchment area greater than 10 km², meet. Created as part of the work undertaken to generate the WFD river typology dataset. The catchment area upstream of the next confluence is excluded from the polygon. The catchment polygons are mutually exclusive and cannot overlap.</idPurp>
<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;A polygon dataset showing the area of land draining directly to each confluence point on the baseline river network (1:50,000), i.e. where two or more rivers, each with a catchment area greater than 10 km², meet. Created as part of the work undertaken to generate the WFD river typology dataset. The catchment area upstream of the next confluence is excluded from the polygon. The catchment polygons are mutually exclusive and cannot overlap. &lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
<idCredit>© Scottish Environment Protection Agency. Some features of this information are based on digital spatial data licensed from the Centre for Ecology and Hydrology Copyright NERC (CEH). Contains OS data Copyright Crown copyright [and database right].</idCredit>
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<attrdef>Confluence ID number</attrdef>
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<attrdef>Description of extent of catchment</attrdef>
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<attrdef>National Grid Reference of confluence point</attrdef>
<attrdefs>SEPA</attrdefs>
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<attrdef>Catchment number</attrdef>
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<udom>Catchment number</udom>
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<attrdef>River number of confluence point</attrdef>
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<udom>River number</udom>
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<atprecis Sync="TRUE">38</atprecis>
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<attrdef>hydro distance to confluence point</attrdef>
<attrdefs>SEPA</attrdefs>
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<udom>hydro distance</udom>
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<attrdef>Area of catchment in square metres</attrdef>
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<udom>Area in square metres</udom>
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<attrdef>perimeter length</attrdef>
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<statement>A dataset of 3260 10km2 catchments was created for the purposes of generating a river typology as required by the Water Framework Directive (WFD). It was recognised that the catchment boundaries could be used for other applications such as the selection of sites within a particular sub catchment. However, before the data could be made available for such applications a series of data quality checks were performed and additional attributes added to the original working dataset. The following text describes the datasets in more detail, the checks carried out and the attributes added.
One Location, Two Catchments
Nested Catchments
The datasets generated for the WFD river typology work were of two types, the first to be created was a nested catchment dataset. In this dataset sub catchments can overlap within one of SEPA’s main river or coastal catchments.
Inter Catchments
The second dataset created for the river typology work was generated from the nested catchment dataset by running the build command. The inter catchments are mutually exclusive polygons. Both inter and nested catchments generated from the same point (confluence, loch shore or river mouth) have the same name and attributes (except area). Each catchment has the following attributes:
ID unique id
Name name of the catchment
Catchment main river or coastal catchment number
River Number baseline integer river number
Upstream measure value in metres for the catchment pour point Easting x coordinate for the pour point
Northing y coordinate for the pour point
NGR National grid reference for the pour point
Data Quality Checks
Naming
The catchments have been named using the following conventions:
1. If the river is flowing directly into a loch: River X at inflow to Loch Y.
2. If the 10 km2 catchment drains directly to the sea: River X at mouth.
3. If the 10 km2 catchments were generated from a confluence: River X at confluence with River Y.
where X and Y represent the names of a river or loch.
The names of most of the catchments were generated automatically using the river names dataset held in the database. The main river catchments were named using SEPA’s main river and coastal catchment dataset. Rivers flowing into lochs were named using the river names and lochs datasets. After the names for the catchments had been generated automatically they were checked manually and superfluous upstream or downstream river names were deleted. Parts of the River Tweed and River Esk catchments lie in England for which SEPA did not have the Ordnance Survey raster data, hence these catchments could not be named and are identified as En. Hydro Codes
Each catchment has a pour point for which a hydro code was generated. The catchments were generated using an automated procedure which named each polygon with a water quality stretch number. For all river confluence catchments and catchments draining directly to the sea, the stretch upstream of the confluence was used to name the catchment. For catchments generated from the shore of a loch, the stretch within the loch was used to name the catchment. A series of checks was run to see if point events generated using the stretch hydro codes actually lay within the catchment of the same name. Due to the pixilated nature of the catchment boundaries there were many cases where the theoretical pour point lay just outside (50 to 150 m) the generated catchment boundary. This is due to the flow grid dataset from which the catchment boundaries have been generated which has a cell size of 50 m The checks were carried out iteratively, adding 50 m to the distance part of the hydro code and then regenerating the points and again comparing them to the catchment boundaries. Any gross errors found with the hydro distance values were corrected.
IDs for the confluence points were collated and their nested catchments exported to a new shapefile. The shapefile was converted to a region coverage with a tolerance of 1m. An AML script was run to copy the confluence id values from the region to the polygons based on a list of confluence ids sorted in descending order of catchment size. Polygons remaining without IDs were checked manually and either assigned their correct value or deleted. The shapefile was dissolved on the ID field and series of checks undertaken to ensure that each baseline confluence had an associated catchment and that each confluence point lay within its catchment area.</statement>
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<report dimension="" type="DQDomConsis">
<measResult>
<ConResult>
<conSpec>
<resTitle>COMMISSION REGULATION (EU) No 1089/2010 of 23 November 2010 implementing Directive 2007/2/EC of the European Parliament and of the Council as regards interoperability of spatial data sets and services</resTitle>
<date>
<pubDate>2010-12-08T00:00:00</pubDate>
</date>
</conSpec>
<conExpl>Domain Consisency
</conExpl>
<conPass>0</conPass>
</ConResult>
</measResult>
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