Projects: Projects for Investigator |
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Reference Number | EP/N001893/1 | |
Title | Realising Energy Storage Technologies in Low-carbon Energy Systems (RESTLESS) | |
Status | Completed | |
Energy Categories | Other Power and Storage Technologies(Energy storage) 100%; | |
Research Types | Basic and strategic applied research 100% | |
Science and Technology Fields | SOCIAL SCIENCES (Economics and Econometrics) 20%; SOCIAL SCIENCES (Sociology) 20%; SOCIAL SCIENCES (Psychology) 20%; ENGINEERING AND TECHNOLOGY (Electrical and Electronic Engineering) 20%; ENGINEERING AND TECHNOLOGY (Mechanical, Aeronautical and Manufacturing Engineering) 20%; |
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UKERC Cross Cutting Characterisation | Systems Analysis related to energy R&D (Energy modelling) 50%; Sociological economical and environmental impact of energy (Consumer attitudes and behaviour) 25%; Sociological economical and environmental impact of energy (Other sociological economical and environmental impact of energy) 25%; |
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Principal Investigator |
Prof PE (Paul ) Dodds No email address given Bartlett Sch of Env, Energy & Resources University College London |
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Award Type | Standard | |
Funding Source | EPSRC | |
Start Date | 01 September 2015 | |
End Date | 31 August 2019 | |
Duration | 48 months | |
Total Grant Value | £1,402,239 | |
Industrial Sectors | Energy | |
Region | London | |
Programme | Energy : Energy | |
Investigators | Principal Investigator | Prof PE (Paul ) Dodds , Bartlett Sch of Env, Energy & Resources, University College London (99.989%) |
Other Investigator | Prof KRW (Keith ) Bell , Electronic and Electrical Engineering, University of Strathclyde (0.001%) Professor GP Harrison , Energy Systems, University of Edinburgh (0.001%) Dr A van der Weijde , Sch of Engineering and Electronics, University of Edinburgh (0.001%) Dr J Radcliffe , Electronic, Electrical and Computer Eng, University of Birmingham (0.001%) Professor S (Seamus ) Garvey , Mechanical, Materials and Manufacturing Engineering, University of Nottingham (0.001%) Dr J McKechnie , Chemical and Environmental Engineering, University of Nottingham (0.001%) Professor P (Paul ) Ekins , UCL Energy Institute, University College London (0.001%) Dr M Barrett , UCL Energy Institute, University College London (0.001%) Professor (Nicholas ) Pidgeon , Psychology, Cardiff University (0.001%) Dr CC Demski , Psychology, Cardiff University (0.001%) Dr C Spataru , Bartlett Sch of Env, Energy & Resources, University College London (0.001%) |
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Industrial Collaborator | Project Contact , The Scottish Government (0.000%) Project Contact , SP Energy Networks (0.000%) Project Contact , Welsh Assembly Government (0.000%) Project Contact , Department of Energy & Climate Change (0.000%) Project Contact , Renewable Energy Association REA (0.000%) Project Contact , E4Tech Ltd (0.000%) Project Contact , Scottish Hydrogen and Fuel Cell Association (SHFCA) (0.000%) |
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Web Site | ||
Objectives | ||
Abstract | This project aims to understand how novel energy storage technologies might best be integrated into an evolving, lower-carbon UK energy system in the future. It will identify technical, environmental, public acceptability, economic and policy issues, and will propose solutions to overcome barriers to deployment.As electricity is increasingly generated by highly-variable renewables and relatively inflexible nuclear power stations, alternatives to the use of highly-flexible fossil-fuelled generation as a means of balancing the electricity system will become increasingly valuable. Numerous technologies for storing electricity are under development to meet this demand, and as the cost of storage is reduced through innovation, it is possible that they could have an important role in a low-carbon energy system. The Energy Storage Supergen Hub is producing a UK roadmap for energy storage that will be the starting point for this project.The value of grid-scale storage to the electricity system has been assessed for some scenarios. For extreme cases comprising only renewable and nuclear generation, the value is potentially substantial. However, the value of energy storage to the UK depends on the costs and benefits relative to sharing electricity imbalances through greater European interconnection, demand-side electricity response, and wider energy system storage, and the optimal approaches to integrating energy storage at different levels across the whole energy system are not well understood. This project will take a broader approach than existing projects by considering energy system scenarios in which storage options are more integrated across the whole energy system, using a series of soft-linked energy and electricity system models. Demand-side response and increased interconnection will be considered as counterfactual technologies that reduces the need for storage.Three broad hypotheses will be investigated in this project: (i) that a whole energy system approach to ES is necessary to fully understand how different technologies might contribute as innovation reduces costs and as the UK energy system evolves; (ii) that a range of technological, economic and social factors affect the value of ES, so should all be considered in energy system scenarios; and, (iii) that the economic value of the difference between good and bad policy decisions relating to the role of energy storage in the transition to low-carbon generation is in the order of bns.A broader, multidisciplinary approach, which extends beyond the techno-economic methodologies that are adopted by most studies, will be used to fully assess the value of energy storage. This project will therefore also examine public acceptability issues for the first time, compare the environmental impacts of storage technologies using life-cycle analyses, and examine important economic issues surrounding market design to realise the value of storage services provided by consumers. All of these analyses willbe underpinned by the development of technology-neutral metrics for ES technologies to inform the project modelling work and the wider scientific community. These multidisciplinary considerations will be combined in a series of integrated future scenarios for energy storage to identify no-regrets technologies. The project will conclude by examining the implications of these scenarios for UK Government policy, energy regulation and research priorities. The analyses will be technical only to the point of identifying the requirements for energy storage, with absolutely no bias towards or against any classes of storage technology. | |
Data | No related datasets |
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Projects | No related projects |
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Publications | No related publications |
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Added to Database | 06/10/15 |