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Society
Abstract: This data shows the outer bounds of the Areas for Further Assessment (AFAs) where, based on the Preliminary Flood Risk Assessment (OPW, 2012), the risks associated with flooding are potentially significant, and where further, more detailed assessment has been undertaken
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Society
Abstract: This dataset represents the future likely position of the coastline in 2050 in areas considered to be vulnerable to erosion.
Lineage: A comparison of the best available current and historical mapping and aerial photography was used to estimate the annual rate of change
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Society
Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) and the associated flood depths during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred
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Society
Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) and the associated flood depths during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred
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Society
Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) and the associated flood depths during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred
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Society
Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) and the associated flood depths during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred
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Society
Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) and the associated flood depths during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred
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National Indicative Fluvial Mapping (NIFM) River Flood Depth - High-End Future ScenarioHIGH VALUEOffice of Public WorksSociety
Abstract: This data indicates the maximum estimated depth of river flooding (fluvial flooding) in meters (m) at a given location, for a flood event of a particular probability. The flood depths are calculated by subtracting the ground levels from the predicted water level. The fl
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National Indicative Fluvial Mapping (NIFM) River Flood Depth - Mid-Range Future ScenarioHIGH VALUEOffice of Public WorksSociety
Abstract: This data indicates the maximum estimated depth of river flooding (fluvial flooding) in meters (m) at a given location, for a flood event of a particular probability. The flood depths are calculated by subtracting the ground levels from the predicted water level. The fl
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National Indicative Fluvial Mapping (NIFM) River Flood Depth - Current ScenarioHIGH VALUEOffice of Public WorksSociety
Abstract: This data indicates the maximum estimated depth of river flooding (fluvial flooding) in meters (m) at a given location, for a flood event of a particular probability. The flood depths are calculated by subtracting the ground levels from the predicted water level. The fl
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Abstract: This data shows daily rainfall totals for the full period of record at rain gauge monitoring stations in the Office of Public Works hydrometric network.
Purpose: To support Flood Forecasting and Warning Systems & Flood Risk Management objectives through the collec
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Abstract: This data shows the rainfall readings for the full period of record at rain gauge monitoring stations in the Office of Public Works hydrometric network.
Purpose: To support Flood Forecasting and Warning Systems & Flood Risk Management objectives through the collec
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Abstract: This data shows the daily mean temerature readings for water monitoring stations in the Office of Public Works hydrometric network. Daily mean water temperatures are the mean values of temperaturel as calculated for each day.
Purpose: To support Flood Risk Management &a
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Abstract: The Hydrology Reference Network is a group of OPW hydrometric gauging stations that have been specially selected to provide a nationwide snapshot of the status of flood or drought events. These gauges were selected on the basis that they provide good quality estimates o
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Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred in the past. This represents the
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Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred in the past. This represents the
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Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred in the past. This represents the
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Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred in the past. This represents the
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Society
Abstract: This data shows the extent of land that might be flooded by the sea (coastal flooding) during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred in the past. This represents the
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National Indicative Fluvial Mapping (NIFM) River Flood Extents - Mid-Range Future ScenarioHIGH VALUEOffice of Public WorksSociety
Abstract: This data shows the modelled extent of land that might be flooded by rivers (fluvial flooding) during a theoretical or ‘design’ flood event with an estimated probability of occurrence, rather than information for actual floods that have occurred in the past.
Flood even