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Coastal Video Research In Support of Coastal Zone Management

Summary of the impact

The Coastal Processes Research Group (CPRG) at Plymouth University has developed new methodologies, utilising video systems to efficiently monitor and manage the coastal environment. This research has impacted upon coastal managers, mariners, coastal communities, tourists and industries, for example, by reducing the risk of coastal flooding, drowning in rip currents and ships running aground. Algorithms, methodologies and systems developed by the CPRG, trigger appropriate and timely management intervention to protect coastal communities from flooding, instruct dredging operations and effectively manage recreational beach resources.

Submitting Institution

Plymouth University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Oceanography, Physical Geography and Environmental Geoscience
Engineering: Maritime Engineering

Influencing Policy and Mobilising Communities Around Coastal Management, Geodiversity and Biodiversity

Summary of the impact

University of Glasgow expertise in coastal erosion has directly influenced biodiversity policy at local, national and international levels, delivered flood mitigation initiatives in partnership with public agencies in Scotland, and mobilised public support for environmental safeguards to preserve our natural heritage. Dr Jim Hansom has been instrumental in shaping UK environmental strategy to include geodiversity. In Scotland, he has worked with the Scottish Environment Protection Agency on flood assessments and the identification of Sites of Special Scientific Interest, helped to establish a charity mobilising community volunteers to monitor Scotland's coastline, and assisted Oxfam to allocate erosion prevention grants to local communities. Hansom's expertise has fed into the polemic protest film You've Been Trumped and a BBC Panorama special, bringing coastal geodiversity and biodiversity issues sharply into focus on a very public stage.

Submitting Institution

University of Glasgow

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Geology, Oceanography, Physical Geography and Environmental Geoscience

An innovative partnership between academic researchers, coastal management groups and end-users delivers targeted research and enhances communication.

Summary of the impact

A research partnership between Edge Hill University and Sefton Metropolitan Borough Council developed innovative methods of identifying gaps in knowledge and understanding about sedimentary coastal dynamics and investigating practitioner needs. The partnership enabled the dissemination of scientific information to audiences across the wider community. The partnership provided a framework which enabled and enhanced integrated coastal zone management (ICZM). Within this framework coastal zone managers were supported in the development of adaptation and mitigation strategies, taking account of both long and short term environmental change. Policy and management decisions are now based upon sound scientific evidence wherever possible, ascertained by research where time allows, with significant scientific, social and policy benefits. Practice elsewhere on the UK's Irish sea coast, and elsewhere in the EU, has been influenced.

Submitting Institution

Edge Hill University

Unit of Assessment

Geography, Environmental Studies and Archaeology

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Oceanography, Physical Geography and Environmental Geoscience

Coastal erosion and management

Summary of the impact

The impact described here relates to a specific example of changes in the management of environmental risk for a coastal management study in the UK, and to changes in the dissemination of coastal management knowledge and experience across Europe. The former involved application of formulae developed by the underpinning research to predict sediment transport rates and shoreline evolution. The latter involved development of the Coastal Wiki, an Internet based professional coastal encyclopaedia. This represents a major new tool for dissemination to policy makers, practitioners, researchers and students.

Submitting Institution

Plymouth University

Unit of Assessment

General Engineering

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Oceanography, Physical Geography and Environmental Geoscience
Engineering: Maritime Engineering

Sand Dune and Shingle Network: linking science and management

Summary of the impact

Coastal dunes are one of the most threatened habitats in Europe, and are in need of urgent conservation. North West Europe is one of the most important areas for vegetated shingle worldwide, and the UK is especially important. The Sand Dune and Shingle Network has helped to change the understanding, policies and practices relating to these habitats in the UK, and in Europe through the creation of knowledge exchange opportunities in a diverse stakeholder environment, by working with and for NGOs. This allows statutory conservation agencies to deliver research, consultancy and policy guidance.

Submitting Institution

Liverpool Hope University

Unit of Assessment

Geography, Environmental Studies and Archaeology

Summary Impact Type

Environmental

Research Subject Area(s)

Studies In Human Society: Policy and Administration, Sociology

Global Forum on Oceans, Coasts, and Islands

Summary of the impact

Professor Mike Philips' research has contributed to understandings of coastal erosion causes, its impacts, mitigation and adaptation strategies. His research and his involvement in numerous policy networks including most notably the Global Forum on Oceans, Coasts, and Islands (GOFCI) has influenced coastal policy discussion and outcomes at a global level. The research has led to coastal tourism and climate change being considered at the highest political level. This is evidenced by Phillips's contribution to international policy documents and processes, such as Rio +20, and wide public and professional recognition.

Submitting Institution

University of Wales, Trinity Saint David

Unit of Assessment

Geography, Environmental Studies and Archaeology

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Oceanography, Physical Geography and Environmental Geoscience
Environmental Sciences: Environmental Science and Management

Enhancing heritage management and capacity building in European wetland archaeology

Summary of the impact

Research carried out by the University of Reading's Martin Bell and Nicholas Branch on previously neglected wetland environments (such as coasts, floodplains and mires) has had impact in two main areas:

1) Heritage management: The work has made a major contribution to the sustainable management of marginal environments in the face of climate change and development pressures. This has directly affected local planning processes, with Bell and Branch's approaches to monitoring and recording adopted as best practice by a range of organisations.

2) Capacity building of geoarchaeology in the commercial sector: The research has enhanced the capability of organisations to respond effectively to the challenges of interpreting European wetland archaeology in advance of development pressures. Knowledge transfer of the research to these commercial units has contributed to sustained economic growth for such organisations.

Submitting Institution

University of Reading

Unit of Assessment

Geography, Environmental Studies and Archaeology

Summary Impact Type

Environmental

Research Subject Area(s)

Earth Sciences: Physical Geography and Environmental Geoscience
Environmental Sciences: Environmental Science and Management
Biological Sciences: Ecology

Societal and economic benefits from improved flood modelling based on pioneering Lancaster research in to risk and uncertainty in environmental modelling.

Summary of the impact

Improved flood risk modelling based on the application of research led by Keith Beven at Lancaster has had global impacts in improved flood defence policies and planning by governments, and in assisting insurers with their underwriting (for example in pricing and policy decisions). The benefits are not just financial — they are human too: improved understanding of flood risk and resilience protects life and assets, and has a positive impact on the well-being of many of those at risk. These impacts are at the centre of flood risk management across the UK, are being applied in nine other European countries, and now becoming the methods of choice for flood mapping in developing countries such as Thailand.

Submitting Institution

Lancaster University

Unit of Assessment

Earth Systems and Environmental Sciences

Summary Impact Type

Societal

Research Subject Area(s)

Mathematical Sciences: Statistics
Information and Computing Sciences: Artificial Intelligence and Image Processing, Computation Theory and Mathematics

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