Loading...
Loading...
Climate models, weather data, oceanography, hydrology, atmospheric science, environmental monitoring
28,176 datasets
England-wide modelled fluvial flood depth data for 1% and 0.1% annual chance flood events, created in 2004. The data provides a high-level sensitivity analysis of climate change effects, based on a 20% increase in peak flows, and was generated using the JFlow two-dimensional hydrodynamic model on a 5x5m grid. It was produced to fill gaps in detailed local modelled data for defining Flood Zones for spatial planning.
England-wide modelled fluvial flood depth data, produced in 2004 as part of a generalised modelling project to define flood zones for spatial planning. The data provides a high-level sensitivity analysis of climate change effects, simulating a 20% increase in peak flows for 0.1% and 1% annual chance flood events. It was generated using the JFlow two-dimensional hydrodynamic model on a 5x5 meter grid but has not been updated since its creation.
2004 modelled fluvial flood depth data for England, created for a 0.1% annual chance flood event under a climate change scenario. The data was produced using the JFlow two-dimensional hydrodynamic model on a 5x5m grid to fill gaps in detailed local modelling for spatial planning. It provides a high-level sensitivity analysis based on a 20% increase in peak river flows, but has not been updated since its creation.
England-wide modelled fluvial flood depth data for a 0.1% annual chance flood event, incorporating a 20% increase in peak flows as a climate change sensitivity scenario. The data was produced in 2004 using the JFlow two-dimensional hydrodynamic model on a 5x5 meter grid as part of a generalized modelling project to define Flood Zones for spatial planning. This specific dataset covers 100x100km Ordnance Survey National Grid tiles (e.g., SZ, SE, SP), and the model has not been updated since its creation.
Environment Agency's AfA480 product provides modelled fluvial flood depth data for a 0.1% annual chance event under a 2004 climate change scenario. The data was generated using the JFlow two-dimensional hydrodynamic model on a 5x5m grid as part of a generalized national modelling project. It serves as a high-level sensitivity analysis based on a 20% increase in peak flows and is available for 100x100km Ordnance Survey grid squares across England.
Modelled fluvial flood depth and climate change depth difference data is a 5x5 meter resolution raster grid showing the difference in flood depth between baseline conditions and a climate change scenario with a 20% increase in peak flows. The dataset was produced in 2004 using the JFlow two-dimensional hydrodynamic model as part of a generalised modelling project to define Flood Zones for spatial planning in England. It covers specific 100x100km Ordnance Survey grid tiles (e.g., NY, NX, NT) and is provided for both the 1% and 0.1% annual chance flood events.
A 2004 dataset provides a 5x5 meter grid showing the difference in modelled fluvial flood depths between baseline conditions and a climate change scenario with a 20% increase in peak flows. It was generated using the JFlow two-dimensional hydrodynamic model as part of a generalized modelling project to define flood zone extents for spatial planning in England. The data covers specific 100x100km Ordnance Survey grid tiles (NZ, NU) and represents both the 1% (1 in 100) and 0.1% (1 in 1000) annual chance flood events.
A 2004 Environment Agency dataset models the difference in flood depth caused by a 20% increase in peak river flows, a specific climate change scenario. It was generated using the JFlow hydrodynamic model on a 5x5 meter grid to fill gaps in detailed local flood data for spatial planning. The data covers specific 100x100km Ordnance Survey grid squares across England for both 1% and 0.1% annual flood probabilities.
Modelled fluvial flood depth difference data shows the change in flood depth under a 2004 climate change scenario of a 20% increase in peak flows. The data is a by-product of the 2004 generalised modelling project, created using the JFlow hydrodynamic model on a 5x5m grid for 0.1% and 1% annual flood chance scenarios. It was designed to fill gaps in detailed local data to define Flood Zones for spatial planning across England, but the dataset has not been updated since its creation.
A 5x5 meter grid dataset from 2004 shows the difference in modelled fluvial flood depth under a 20% increase in peak flows, representing a climate change scenario. It was produced using the JFlow hydrodynamic model as part of a generalised modelling project to define Flood Zones for spatial planning across England. The data covers specific 100x100km Ordnance Survey grid squares (SK, SS, SW, SZ) and is intended for broad-scale analysis, not site-specific property assessments.
A 2004 Environment Agency dataset models the projected increase in fluvial flood depths across England due to a 20% increase in peak flows, a specific climate change scenario. It provides a 5x5 meter grid comparing baseline flood depths to those under the climate-adjusted scenario for both 1% and 0.1% annual probability flood events. This generalized national-scale model was created to fill data gaps for spatial planning but has not been updated since its creation.
A 2004 Environment Agency dataset models the difference in flood depth caused by a 20% increase in peak river flows due to climate change. It covers a 100x100 km grid square (SU) in England at a 5x5 meter resolution, generated using the JFlow hydrodynamic model. The data is a by-product of a generalised modeling project to define flood zones for spatial planning where detailed local models were unavailable.
England's 2004 generalised modelling project produced this 5x5m grid data showing the difference in modelled fluvial flood depths between baseline and climate change conditions, assuming a 20% increase in peak flows. It covers the 100x100km Ordnance Survey National Grid reference SP and was generated for both the 1% and 0.1% annual chance flood events using the JFlow two-dimensional hydrodynamic model. The dataset was created to fill gaps in detailed local data for defining Flood Zones for spatial planning, but it has not been updated since 2004.
A 5x5 meter geospatial grid shows the difference in modelled fluvial flood depths between baseline conditions and a climate change scenario with a 20% increase in peak flows. This dataset was produced in 2004 using the JFlow hydrodynamic model as part of a generalized project to define Flood Zones for spatial planning across England. It covers a 100x100 km Ordnance Survey grid reference (SJ) and is intended for broad-scale analysis, not site-specific assessments.
England's 2004 generalised modelling project produced this 5x5m grid showing the difference in modelled fluvial flood depths with and without a 20% increase in peak flows, representing a climate change scenario. The data covers the SE 100x100km Ordnance Survey National Grid tile and was generated using the JFlow two-dimensional hydrodynamic model. It was created to define Flood Zone extents for spatial planning in areas lacking detailed local models at the time.
A 2004 depth grid shows the difference in modelled fluvial flood depths under a 20% increase in peak flows, representing a climate change scenario. This 5x5 meter resolution dataset was produced using the JFlow hydrodynamic model to fill gaps in detailed local flood data for spatial planning. It covers specific 100x100km Ordnance Survey grid squares in England for both 1% and 0.1% annual chance flood events.
2004 data provides a 5x5m resolution grid showing the difference in modelled fluvial flood depths between baseline conditions and a climate change scenario with a 20% increase in peak flows. It was generated using the JFlow hydrodynamic model as part of a generalised modelling project to define Flood Zones for spatial planning in areas lacking detailed local data. The dataset covers specific 100x100km Ordnance Survey grid tiles (e.g., SS, SK, ST, SY) across England for a 0.1% annual chance flood event.
A 5x5m resolution geospatial grid shows the difference in modelled fluvial flood depths between baseline conditions and a 2004 climate change scenario with a 20% increase in peak flows. This dataset was produced for the 0.1% annual chance flood event using the JFlow hydrodynamic model to fill gaps in detailed local data for spatial planning. It covers specific 100x100km Ordnance Survey grid squares (NU, SW) within England but has not been updated since its creation.
The 2004 generalised modelling project produced a depth difference grid showing the change in modelled fluvial flood depths under a 20% increase in peak flows, representing a climate change scenario. This data, generated using the JFlow hydrodynamic model, covers a 0.1% annual chance flood event on a 5x5 meter grid for specific 100x100km Ordnance Survey grid squares in England. Its primary purpose was to fill gaps in detailed local data to help define Flood Zones for spatial planning.
2,978 paleoclimate proxy-data time series are combined with an atmosphere-ocean climate model to produce the first truly global reconstructions of hydroclimate and dynamical variables from 1 to 2000 CE. Three separate reconstructions target annual means, boreal summer (JJA), and austral summer (DJF), each containing gridded surface temperature, PDSI, and SPEI at about 2-degree resolution. The dataset also includes dynamical variables like the Atlantic Multidecadal Oscillation, Nino SST indices, and the location of the Intertropical Convergence Zone.