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Design of Ocean Compressed Air Energy Storage System

机译:海洋压缩空气储能系统设计

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Ocean renewable energy resources are intermittent and a large scale energy storage is needed for their optimal utilization. Ocean compressed air energy storage (OCAES) system is promising large-scale energy storage for integration of ocean energy with the electric grid. In OCAES, energy is stored in the form of compressed air in an underwater storage device. In this paper, modeling and design of various components in the OCAES system is presented. Furthermore, design specifications and efficiencies of the various components in the 2MWh storage system at 500 m ocean depth are evaluated. Design of compressor/expander is crucial for high efficiency and sensible component sizing. Tread-off between the polytropic index and stroke time should be addressed in the compressor/expander design. Compressor/expander volume can be divided into a large number of liquid piston cylinders to achieve high efficiency. Higher ocean depth of the air storage system decreases storage volume requirement but affects roundtrip efficiency. The roundtrip efficiency of OCAES can be significantly improved by designing compressor/expander operating under near-isothermal conditions.
机译:海洋可再生能源是间歇性的,需要大规模储能以实现其最佳利用。海洋压缩空气储能(OCAES)系统有望实现大规模储能,以将海洋能与电网整合在一起。在OCAES中,能量以压缩空气的形式存储在水下存储设备中。本文介绍了OCAES系统中各个组件的建模和设计。此外,还评估了海洋深度为500 m时2MWh存储系统中各种组件的设计规格和效率。压缩机/膨胀机的设计对于高效和合理的部件尺寸至关重要。在压缩机/膨胀机设计中应解决多变指数和冲程时间之间的偏差。压缩机/膨胀机的体积可分为大量的液体活塞缸,以实现高效率。空气存储系统的较高海洋深度降低了存储量要求,但影响了往返效率。通过设计在接近等温条件下运行的压缩机/膨胀机,可以大大提高OCAES的往返效率。

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