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modeling and techno-economic analysis of a novel trans-critical carbon dioxide energy storage system based on life cycle cost method

机译:生命周期成本法的新型跨临界二氧化碳储能系统建模与技术经济分析

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摘要

In this paper, a closed-loop energy storage system using carbon dioxide as working fluid with a heat pump to recover the stored compressed heat is investigated. A techno-economic model that aimed at assessing the investment costs and economic performance has been performed by using the life cycle cost method on CO2 utilization of the energy storage system. The opinions on the further promotion and application are proposed by sensitivity analysis of key influencing factors. Results are found that by enlarging the peak-to-off-peak electricity price difference, increasing the annual operating hours and expanding the system unit capacity, it will be beneficial to the economic benefits for this novel energy storage system. Despite the relatively high investment costs compared with AA-CAES system, the proposed system is more competent and may be considered of interest duo to the long life duration and its potential environmental and social values on further CO2 utilization for a circular economy.
机译:本文研究了一种利用二氧化碳作为工作流体并带有热泵来回收存储的压缩热的闭环储能系统。通过使用生命周期成本方法对储能系统的CO2利用率进行了旨在评估投资成本和经济绩效的技术经济模型。通过对关键影响因素的敏感性分析,提出了进一步推广应用的意见。结果发现,通过增大峰峰值电价差,增加年度运行小时数和扩大系统单位容量,将对这种新型储能系统的经济效益有利。尽管与AA-CAES系统相比投资成本相对较高,但拟议的系统更胜任,并且考虑到使用寿命长及其潜在的环境和社会价值,对循环经济中的CO2进一步利用具有重要意义。

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