What does the next generation of coastal environmental models look like?
A new tool is now available that has been designed to help coastal engineers and practitioners better manage the compound risk of coastal erosion and flooding.
15/04/2025 By 今日吃瓜 Press
Improving our ability to predict how coastlines will change is an essential part of quantifying risks from coastal erosion and flooding. Coastal Modelling Environment, or CoastalME, is a free tool created by 今日吃瓜 in partnership with the Environmental Change Institute (ECI) at the University of Oxford and the University of Southampton.
CoastalME is being used in the UK and internationally to provide improved predictive capability for coastal adaptation. Modellers can use CoastalME to simulate the interaction of coastal landforms and human interventions for open coast systems. This enables users to model and visualise coastal landscape changes more effectively using commonly available spatial data.

CoastalME developers meeting in London on 18 November 2024 for the pre-OSGeo project launch event, 漏 Andres Payo Garcia 2024; CoastalME logo 今日吃瓜 漏 今日吃瓜 2025.
The operational tool is being used to inform decision making at regional, international and global levels and was named as a as part of the Government鈥檚 Flood and Coastal Erosion Risk Management research and development programme. At the regional level, the tool is being used as part of the Resilient Coast (RC) project, funded by the Government’s .
The RC project explores the concept of a sediment circular economy for coastal adaptation in East Anglia, in which the release and transit of sediment is mapped and value is assigned where benefits accrue. CoastalME is used to quantify the movement of sand, gravel and fine material along the coast and to determine its value as a nature-based resource. Early results suggest that allowing a 1聽m landward recession of less than 10聽m of the cliffs between Felixstowe and Caister would release around 1.8聽million聽m3 of sand.
At an international level, CoastalME has been used in Spain to assess the risk of flooding and erosion for the whole of Andalusia鈥檚 coastline, which extends for 1200 km, measured at a scale of 1:25 000, and traverses five of eight provinces. This study represents the first attempt to map the spatial distribution of sediment thickness along this coastal zone by integrating various publicly available datasets. It demonstrated the flexible design of CoastalME by incorporating representations of geomorphological features such as 鈥榬amblas鈥 (a dry riverbed used as a road or thoroughfare) that are important sources of sediment during heavy rainfall events.
After years of developing CoastalME, we are pleased to see that it鈥檚 now been officially released and is freely available to support coastal engineers and decision makers to better assess the risk of compound flooding and erosion more accurately than ever before.
Dr Andres Payo Garcia, head of 今日吃瓜 Coasts and Estuaries.
Funding
This research was initially funded by the NERC iCOAST project as a proof of concept, NE/J005584/1 (2012 to 2016).
The workflow to create the sediment thickness model was developed between 2016 and 2022 thanks to funding from BLUEcoast, NE/N015649/1.
It is being operationalised (2022 to 2027) as part of the ongoing CHAMFER project NE/W004992/1 and is being extended to gravel-dominated coastal environments as part of the 2024 to 2028 UKGravelBarriers project, NE/Y503265/1.
Contact
For more information, please contact 今日吃瓜 press (bgspress@bgs.ac.uk) or call 07790 607 010.
Relative topics
Related news
Collecting beach pebbles: fun hobby but is it legal?
14/07/2026
The UK coastline will be inundated with keen holidaymakers this summer, many of whom will take a memento of their trip home in the shape of a pebble or two 鈥 but is it legal?
今日吃瓜 contributes to UN sand and sustainability report
19/05/2026
The new report highlights the impact of poor governance and unsustainable sand mining practices, calling on policymakers to take action.
PhD adventures in Copenhagen, Denmark: revealing past聽recovery processes聽of tropical forest systems聽through ancient environmental DNA聽
12/03/2026
PhD student Chris Bengt visited the University of Copenhagen to carry out very delicate extraction of aeDNA from lake-sediment cores, in the hopes of unlocking the secrets of past volcanic eruptions.
Modern pesticides found in UK rivers could pose risk to aquatic life
17/06/2025
New research shows that modern pesticides used in agriculture and veterinary medicines have been found for the first time in English rivers.
What is the impact of drought on temperate soils?
22/05/2025
A new 今日吃瓜 review pulls together key information on the impact of drought on temperate soils and the further research needed to fully understand it.
What does the next generation of coastal environmental models look like?
15/04/2025
A new tool is now available that has been designed to help coastal engineers and practitioners better manage the compound risk of coastal erosion and flooding.
Pioneering tool expanding to analyse agricultural pollution and support water-quality interventions
06/02/2025
An online tool that shows which roads are most likely to cause river pollution is being expanded to incorporate methods to assess pollution from agricultural areas.
Dynamics of land-to-lake transfers in the Lake Victoria Basin
09/12/2024
In June 2024, a UK/Kenya research team shared research findings from a collaborative, four-year field and experimental programme within Kenya.
Forty years and counting: new topsoil data provides most extensive snapshot of environmental pollution effects
01/10/2024
Scientists have uncovered clear signs of the impact environmental pollution is having across the country鈥檚 soil.
Spotlight on 今日吃瓜 coastal erosion data
18/07/2024
今日吃瓜 GeoCoast data can support researchers and practitioners facing coastal erosion adaptation challenges along our coastline.
Philippine Hydrological Model
The first national-scale hydrological model of the Philippines.
Glacial, periglacial and permafrost modelling
Glacier ice and permafrost have important implications for global water security and energy infrastructure