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Brayton-cycle-based pumped heat electricity storage with innovative operation mode of thermal energy storage array

机译:Brayton-循环的泵送热电存储具有创新的热能存储阵列的操作模式

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摘要

As a novel physical energy storage technology with energy densities and efficiencies comparable to advanced compressed air energy storage, pumped heat electricity storage (PHES) has attracted significant attention in recent years. Arrayed multi thermal energy storage (TES) reservoirs have promising potential for large-scale TES storage, and the operation modes of TES arrays significantly affect the PHES system which has not been investigated in presented studies. By performing numerical simulations considering coupling dynamics, transient heat transfer, and thermodynamics, the transient behavior of the cyclic steady-state of a 10 MW/8 h Joule?Brayton PHES system under four operation modes including series, parallel, in-sequence, and the innovative ?temperature complementation? is investigated in this study. The PHES with series-connected reservoirs arrays has a round-trip efficiency of 64.9% and a delivery variation of 43.1%; these results are better than those obtained under the parallel and in-sequence operating modes of the singular reservoir PHES. Under the innovative ?temperature complementation? operation mode, the delivery stability improves further with a variation of 13.2%. The TES reservoirs could be reduced to 1.8 times the minimum volume with a round-trip efficiency of 63%?65%. Such a TES array with the ?temperature complementation? operation mode may facilitate the development and application of other fixed TES technologies by providing stable thermal energy delivery.
机译:作为一种新的物理能量存储技术,具有与先进压缩空气储存相当的能量密度和效率,近年来泵送热电储存(手表)引起了显着的关注。阵列多热能储存(TES)储存器具有大规模TES储存的有希望的潜力,并且TES阵列的操作模式显着影响尚未在呈现的研究中进行研究的PHES系统。通过执行考虑耦合动力学,瞬态传热和热力学的数值模拟,循环稳态的循环稳态的瞬态行为在四种操作模式下,包括串联,并联,依次,和创新的吗?温度互补?在本研究中调查。带有系列连接的水库阵列的手表往返效率为64.9%,交付变化为43.1%;这些结果优于单数储层PHES的平行和序列操作模式下获得的结果。在创新的?温度互补?操作模式,输送稳定性进一步改善,变化为13.2%。 TES水库可以减少到最小体积的1.8倍,往返效率为63%?65%。这种TES阵列与吗?温度互补?操作模式可以通过提供稳定的热能输送来促进其他固定TES技术的开发和应用。

著录项

  • 来源
    《Applied Energy》 |2021年第1期|116821.1-116821.12|共12页
  • 作者单位

    Chinese Acad Sci Inst Engn Thermophys Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China|Chinese Acad Sci Dalian Natl Lab Clean Energy Dalian 116023 Peoples R China;

    Chinese Acad Sci Inst Engn Thermophys Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China|Chinese Acad Sci Dalian Natl Lab Clean Energy Dalian 116023 Peoples R China;

    Chinese Acad Sci Inst Engn Thermophys Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci Inst Engn Thermophys Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China|Chinese Acad Sci Dalian Natl Lab Clean Energy Dalian 116023 Peoples R China;

    Chinese Acad Sci Inst Engn Thermophys Beijing 100190 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China|Chinese Acad Sci Dalian Natl Lab Clean Energy Dalian 116023 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pumped heat electricity storage; Energy storage; Arrayed thermal energy storage; Thermal energy storage;

    机译:泵送电热储存;储能;排列的热能存储;热能储存;

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