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Pumped Thermal Energy Storage and Bottoming System Part B: Sensitivity analysis and baseline performance

机译:抽水式热能存储和制底系统B部分:灵敏度分析和基准性能

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摘要

This paper (Part B) presents the results of sensitivity, baseline performance, and levelized cost of energy analyses of a recently proposed Pumped Thermal Energy Storage and Bottoming System (Bot-PTES) that uses ammonia as the working fluid. The system model was outlined in Part A of this two-part paper. This analysis focuses on the effects of hot thermal storage utilization, system pressure, and evaporator/condenser size on the system performance. It also presents the estimated performance for a proposed baseline Bot-PTES. Results of this analysis showed that all selected parameters had significant effects on efficiency, with the evaporator/condenser size having the largest effect over the selected ranges. Results for the baseline case showed stand-alone energy storage efficiencies between 51 and 66% for varying power levels and charge states, and a stand-alone bottoming efficiency of 24%. The resulting efficiencies for this case were low compared to competing technologies; however, the dual-functionality of the BotPTES enables it to have higher capacity factor, leading to $91-197/MWh levelized cost of energy compared to $262-284/MWh for batteries and $172-254/MWh for Compressed Air Energy Storage. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文(B部分)介绍了最近提出的使用氨作为工作流体的抽水式热能存储和底部系统(Bot-PTES)的灵敏度,基线性能和能源分析的平准化成本的结果。该系统模型在此两部分的论文A部分中进行了概述。该分析着重于热储热利用率,系统压力以及蒸发器/冷凝器尺寸对系统性能的影响。它还提供了建议的基准Bot-PTES的估计性能。分析结果表明,所有选定的参数均对效率产生重大影响,其中蒸发器/冷凝器的尺寸在选定范围内影响最大。基准案例的结果显示,对于不同的功率水平和充电状态,独立的储能效率在51%到66%之间,独立的触底效率为24%。与竞争技术相比,这种情况下产生的效率较低;然而,BotPTES的双重功能使其具有更高的容量系数,从而使平均能源成本为$ 91-197 / MWh,而电池为$ 262-284 / MWh,压缩空气储能为$ 172-254 / MWh。 (C)2016 Elsevier Ltd.保留所有权利。

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