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The cold store for a pumped thermal energy storage system

机译:抽水蓄能系统的冷库

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摘要

In recent years several proposals for thermodynamic cycles involving the compression and expansion of gas and thermal storage have been put forward as effective ways of storing energy. These include the work of Desrues [1] who proposed a thermal energy storage process for large scale electric applications, Isentropic Ltd [2] who were working on a pumped thermal energy storage system and Garvey who proposed storing wind energy using a wind driven thermal pumping system known as Wind-TP [3]. All these systems require a hot and a cold store capable of storing thermal energy which can later be used to generate electricity. The efficiency and ultimately the successful adoption of pumped thermal energy storage will depend on the effectiveness of the thermal stores. In this paper we compare the performance of a packed bed and a liquid thermocline as the cold store for an off-shore Wind-TP system. Simulations are used to compare the exergetic performance of the two options leading to the conclusion that a liquid thermocline has potential to be significantly more effective than a packed bed thermocline. An addition to a liquid store involving a sliding divider separating warm and cold fluid is proposed as a way of avoiding exergy losses associated with the smearing of a thermocline front.
机译:近年来,已经提出了一些涉及压缩和膨胀气体以及储热的热力学循环的建议,作为有效的储能方法。这些工作包括Desrues [1]的工作,他提出了用于大规模电力应用的热能存储过程; Isentropic Ltd [2],正在研究抽水式热能存储系统; Garvey提出了使用风热式热泵存储风能的工作。系统称为Wind-TP [3]。所有这些系统都需要能够存储热能的热库和冷库,这些热能随后可用于发电。抽气式热能储存器的效率以及最终能否成功采用将取决于热能储存器的有效性。在本文中,我们比较了填充床和液体温跃层作为海上Wind-TP系统冷库的性能。通过仿真比较了这两种方法的性能,得出结论认为,液体热跃线有潜力比填充床热跃线更有效。为了避免与温床前部的污迹相关的火用损失,提出了一种在储液器中增加一个装置的方法,该储液器包括一个将冷热流体分开的滑动分隔器。

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