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Mechanical Systems for Energy Storage – Scale and Environmental Issues. Pumped Hydroelectric and Compressed Air Energy Storage

David J A Evans, Gideon Carpenter, Gareth Farr

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Abstract

This chapter introduces large-scale utility (bulk) energy storage in the form of pumped hydroelectric and compressed air energy storage. Both are mechanical energy storage technologies, converting electrical energy into potential energy, and both fall into the category of grid-scale energy management. Brief reviews and discussions relating to the general operational aspects and the legislative and environmental aspects of the two storage types are provided in the context of UK development. Both storage technologies offer the potential for better integration and penetration of renewable electricity sources and the reduction of greenhouse gas emissions.

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What this paper is about

This chapter introduces large-scale utility (bulk) energy storage in the form of pumped hydroelectric and compressed air energy storage. Both are mechanical energy storage technologies, converting electrical energy into potential energy, and both fall into the category of grid-scale energy management. Brief reviews and discussions relating to the general operational aspects and the legislative and environmental aspects of the two storage types are provided in the context of UK development. Both storage technologies offer the potential for better integration and penetration of renewable electricity sources and the reduction of greenhouse gas emissions.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This chapter introduces large-scale utility (bulk) energy storage in the form of pumped hydroelectric and compressed air energy storage. Both are mechanical energy storage technologies, converting electrical energy into potential energy, and both fall into the category of grid-scale energy management. Brief reviews and discussions relating to the general operational aspects and the legislative and environmental aspects of the two storage types are provided in the context of UK development. Both storage technologies offer the potential for better integration and penetration of renewable electricity sources and the reduction of greenhouse gas emissions.

Key concepts: Pumped-storage hydroelectricity, Compressed air energy storage, Energy storage, Renewable energy, Hydroelectricity, Grid energy storage, Compressed air, Intermittent energy source

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