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首页> 外文期刊>Heat Transfer Research >PRELIMINARY ANALYSIS AND OPTIMIZATION OF A THERMOELECTRICAL SYSTEM BASED ON THE SUPERCRITICAL CO2 CYCLE
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PRELIMINARY ANALYSIS AND OPTIMIZATION OF A THERMOELECTRICAL SYSTEM BASED ON THE SUPERCRITICAL CO2 CYCLE

机译:基于超临界CO 2 循环的热电系统的初步分析与优化

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摘要

A novel type of thermoelectric energy storage (TEES) utilizing supercritical carbon dioxide (S-CO_(2)) cycle and storage of heat in hot water is presented. It is based on the conversion of electricity into thermal energy during charge by a compressor and on the conversion of thermal energy into electricity during discharge by a turbine. In this paper, the background and a short review on TEES and S-CO_(2) cycle is given firstly. Following the introduction as a general concept, the S-CO_(2)-based system is presented by briefly providing a description of the thermodynamic cycle and the corresponding operating conditions. Then a thermodynamic analysis is completed to obtain the relationships between the key parameters and performance of the system under design conditions after the computational models have been built. Next multiple parameters that have the most significant effect on the system performance are chosen for subsequent parameter optimization based on the calculation models. The system performance and economic cost have been optimized by multiobjective optimization, and the Pareto solution set is finally provided. The paper is concluded by discussing the engineering prospects of this system mainly dependent on technology improvements of the heat storage materials and the core equipment such as the compressor, turbine, and the heat exchanger.
机译:提出了一种利用超临界二氧化碳(S-CO_2))循环和热水蓄热的新型热电储能装置(TEES)。它基于压缩机充电时电能转化为热能,以及涡轮机放电时热能转化为电能。本文首先介绍了TEES和S-CO_2循环的研究背景和简要评述。在作为一般概念介绍之后,通过简要描述热力学循环和相应的操作条件,介绍了基于S-CO_2的系统。在建立计算模型后,对系统进行热力学分析,得到系统在设计条件下的关键参数与性能之间的关系。接下来,根据计算模型,选择对系统性能影响最大的多个参数进行后续参数优化。通过多目标优化对系统性能和经济成本进行了优化,并给出了Pareto解集。本文最后讨论了该系统的工程前景,主要取决于蓄热材料和核心设备(如压缩机、涡轮机和换热器)的技术改进。

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