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<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P STYLE="margin:0 0 19 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;Groundwater is the water that soaks into the ground from rain and can be stored beneath the ground. An aquifer is a body of rock and/or sediment that holds groundwater. There are two main types of aquifer in Ireland: bedrock aquifers and sand and gravel aquifers. Bedrock aquifers are found in cracked bedrock and in limestone bedrock which has been partly dissolved to create cavities.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 19 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;Bedrock is the solid rock at or below the land surface. Over much of Ireland, the bedrock is covered by materials such as sands and gravel. The sands and gravels occur naturally on top of the bedrock. They were laid down by meltwater from melting ice sheets, by rivers, or by wind. &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 19 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;There are two main types of bedrock aquifer. In most of them, groundwater flows through fractures and fissures. In about half of the limestone rocks, groundwater flows through cavities and caves. This type of limestone is called karst. &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 19 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;The bedrock aquifer map shows the potential of areas in Ireland to provide water supplies. There are three main groups based on their resource potential:&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;UL STYLE="margin:0 0 0 0;padding:0 0 0 0;"&gt;&lt;LI&gt;&lt;P STYLE="margin:0 0 8 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;Regionally important – the aquifers are capable of supporting large public water supplies sufficient to support a large town; &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P STYLE="margin:0 0 8 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;Locally important – the aquifers are capable of supporting smaller public water supplies or group schemes; &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P STYLE="margin:0 0 8 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;Poor – the aquifers are only capable of supporting small supplies, such as houses or farms, or small group schemes.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;/UL&gt;&lt;P STYLE="margin:0 0 8 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;The three main groups are broken down into seven bedrock aquifer categories in total. Please read the lineage for further details.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 14 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;Information used to assign bedrock aquifer categories include: rock type (Hydrostratigraphic Rock Unit Groups - simplified bedrock geology with similar hydrogeological properties), &lt;/SPAN&gt;&lt;/SPAN&gt;&lt;SPAN&gt;&lt;SPAN&gt;yield (existing wells and springs), permeability and structural characteristics. All of the information is interpreted by a hydrogeologist and areas are drawn on a map to show the aquifers.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 19 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;This Bedrock Aquifer map is to the scale 1:100,000 (1 cm on the map relates to a distance of 1km).&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 0 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;It is a vector dataset. Vector data portray the world using points, lines, and polygons (areas).&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:8 0 0 0;"&gt;&lt;SPAN&gt;&lt;SPAN&gt;The aquifer data is shown as polygons. Each polygon holds information on the aquifer code, description, rock unit name, rock unit description, Hydrostratigraphic Rock Unit Group Name, Hydrostratigraphic Rock Unit Group Changes, Bedrock Geology 100k newcode, stratigraphy code (rock layers with age profile), lithology code (rock type), Original Aquifer Category and Comments.&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
<idPurp>Groundwater is the water that soaks into the ground from rain and can be stored beneath the ground. An aquifer is a body of rock and/or sediment that holds groundwater. There are two main types of aquifer in Ireland: bedrock aquifers and sand and gravel aquifers. Bedrock aquifers are found in cracked bedrock and in limestone bedrock which has been partly dissolved to create cavities. Groundwater resources can also occur in large deposits of sand and gravel.
Aquifer maps help us locate groundwater resources which can be used to supply drinking water. Knowing where and in what amounts groundwater can be found is important. It helps us plan where water supplies for communities and towns can be developed. The data can also help to protect drinking water. Rock properties and structures such as faults impact how water and/or pollutants move below the surface. Drinking water can be protected by locating potential polluting operations, such as landfills, away from groundwater.
Geothermal energy is the energy stored in the form of heat beneath the surface of the earth. It can be used to supply heat and hot water. It can also be used to cool a house by removing surplus heat energy and putting it into the ground. Aquifer maps along with subsoil and bedrock maps are used to help decide if the ground under a site is suitable for geothermal energy extraction.</idPurp>
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<statement>The process of assigning each aquifer to an appropriate category is termed ‘aquifer classification’. The detailed criteria and process can be found here: https://www.gsi.ie/en-ie/publications/Pages/GSI-aquifer-classification-flowchart.aspx.
Bedrock aquifer classification is based firstly on the rock type (lithology), and the 1:100,000 simplified bedrock map is used as a basis. This dataset is called the Hydrostratigraphic Rock Unit Groups 1:100,000 Ireland (ROI) ITM, which was generalised to 27 hydrostratigraphic units. Yield is one of the main concerns in aquifer development projects, yields from existing wells are conceptually linked with the main aquifer categories:
• Regionally important (R) aquifers should have (or be capable of having) a large number of ‘excellent’ yields: in excess of approximately 400 m3/d (4,000 gph). • Locally important (L) aquifers are capable of ‘good’ well yields 100-400 m3/d (1,000-4,000 gph).
• Poor (P) aquifers would generally have ‘moderate’ or ‘low’ well yields - less than 100 m3/d.
However, existing well yield information is often difficult to use because reliable, long term yield test data are quite rare (particularly for the less productive aquifers). In practice, then, the following criteria are used in aquifer classification:
• Permeability and transmissivity data from formal pumping tests, where discharge and water levels readings have been taken over a period of many hours or days.
• Productivity data from wells where either formal pumping tests have been undertaken or where at least one combined reading of discharge and drawdown data are available. The GSI has developed the concept of ‘productivity’ as a semi-quantitative method of utilising limited well test data (Wright, 2000). A ‘productivity index’ is assigned to a well from one of five classes: I (highest), II, III, IV, and V, using a graphical comparison of well discharge with specific capacity.
• Occurrence of springs with ‘high’ flows (greater than 2160 m3/day total flow).
• Occurrence of wells with ‘excellent’ yields (greater than 400 m3/day discharge).
• Hydrological information such as drainage density where overlying strata are thin, and baseflows or flows in rivers (better aquifers will support higher baseflows and summer flows).
• Lithological and/or structural characteristics of geological formations which indicate an ability to store and transmit water. Clean washed and sorted sands and gravels for example, are more permeable than poorly sorted glacial tills. Clean limestones are also more permeable than muddy limestones. Areas where folding and faulting has produced extensive joint systems tend to have higher permeabilities than areas where this has not occurred.
• Aquifer assessments from Groundwater Protection Schemes in neighbouring counties and from existing reports.
All seven factors are considered together; productivity and permeability data are only given ‘precedence’ over lithological and structural inferences where sufficient data are available. Data from neighbouring counties in similar geological environments are included.
Some bedrock units have been grouped if they are of similar geological age and have similar lithological/structural characteristics. In considering the classifications provided, it is important to note that:
• The bedrock aquifer classifications are based on the bedrock units mapped by the Bedrock Section of the Geological Survey Ireland at 1:100,000 scale - Bedrock Geology 1:100,000 Ireland (ROI) ITM
There are seven bedrock aquifer categories:
Regionally Important Aquifers: can support regionally important abstractions (e.g. large public water supplies), or give excellent yields (&gt;400 m3/d). Bedrock aquifer units generally have a continuous area of &gt;25 km2 and groundwater predominantly flows through fractures, fissures, joints or conduits. Regionally important sand/gravel aquifers are &gt;10 km2, and groundwater flows between the sand and gravel grains.
This group is subdivided into the following types:
• Rk Regionally Important Karstified Bedrock Aquifer
• Rf Regionally Important Fissured Bedrock Aquifer
Regionally important karstified aquifers can be subdivided if it is known that groundwater flows mainly through conduits (Rkc) or more diffusely through solutionally-enlarged fissures (Rkd).
Locally Important Aquifers: can support locally important abstractions (e.g. smaller public water supplies, group schemes), or give good yields (100-400 m3/d). In the bedrock aquifers, groundwater predominantly flows through fractures, fissures, joints or conduits. Locally important sand/gravel aquifers are typically &gt;1 km2, and groundwater flows between the sand and gravel grains.
This group is subdivided into the following types:
• Lm Locally Important Bedrock Aquifer, Generally Moderately Productive
• Ll Locally Important Bedrock Aquifer, Moderately Productive only in Local Zones
• Lk Locally Important Karstified Bedrock Aquifer
Poor Aquifers: are capable of sustaining small abstractions (e.g. domestic supplies, small group schemes), or moderate to low yields (&lt;100 m3/d). Groundwater predominantly flows through a limited and poorly-connected network of fractures, fissures and joints.
This group is subdivided into the following types:
• Pl Poor Bedrock Aquifer, Generally Unproductive except in Local Zones
• Pu Poor Bedrock Aquifer, Generally Unproductive
All work on the data was carried out in ArcGIS.
In 2021, the data structure was reviewed and a new database was created in ArcGIS Enterprise.
Using ArcGIS Pro 2.6.3, the dataset was renamed as part of a GSI data standardisation process. A standardised dataset alias was added.
A unique id field was added.
A new unique identifier was added for each record using an attribute rule.
Most fields were renamed and an alias added.
Domains were created for relevant fields to ensure attribute integrity for those fields. The attribute values can only be added from pre-defined GSI tables in the form of drop-down values.
Attribute rules were set up to automatically insert certain values eg unique identifier.
The data was cleaned using a GSI notebook. This checked the attribute values contained valid domain values and a spell check was carried out. Some manual cleaning of obvious errors was also carried out.
Metadata was updated to new GSI standard.
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