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Thermodynamic performance analysis, assessment and comparison of an advanced trigenerative compressed air energy storage system under different operation strategies

机译:不同运行策略下先进的三代压缩空气储能系统的热力学性能分析,评估和比较

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摘要

Trigenerative compressed air energy storage (T-CAES) system, placed to energy demand, can supply power, heat and cooling load to users simultaneously. In order to improve the performance of T-CAES system, an advanced T-CAES system is proposed in this paper, in which a burner is added before turbine to further heat turbine inlet air. In order to cope with the variation of energy demand, three operation strategies of turbine considering off-design condition is presented to control output power of the T-CAES system: turbine inlet mass flow rate of air control (TIM), turbine inlet pressure control (TIP) and turbine inlet temperature control (TIT). Thermodynamic performance analysis in design condition of the proposed T-CAES system has been carried out, and off-design performance analysis and comparison of the T-CAES system under different operation strategies have been investigated. Comparing with conventional T-CAES, the total consumed power of the proposed T-CAES system is a 495.0 kW decrease, and the power efficiency improves 1.2%. The turbine output power and assessment indicators should be both taken account to determine the best choice of operation strategy. This research may provide a guide line for system integration and operation strategy of T-CAES system under off-design condition to improve thermodynamic performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:满足能源需求的三代压缩空气储能(T-CAES)系统可同时为用户提供电力,热量和冷却负荷。为了提高T-CAES系统的性能,本文提出了一种先进的T-CAES系统,该系统在涡轮机之前增加一个燃烧器,以进一步加热涡轮机进气。为了应对能量需求的变化,提出了三种考虑非设计工况的涡轮机运行策略来控制T-CAES系统的输出功率:涡轮机进气口空气质量流量控制(TIM),涡轮机进气口压力控制(TIP)和涡轮进口温度控制(TIT)。在所提出的T-CAES系统的设计条件下进行了热力学性能分析,并研究了不同运行策略下T-CAES系统的非设计性能分析和比较。与传统的T-CAES相比,拟议的T-CAES系统的总功耗降低了495.0 kW,功率效率提高了1.2%。应当同时考虑涡轮机的输出功率和评估指标,以确定最佳的运行策略选择。该研究可为非设计条件下T-CAES系统的系统集成和运行策略提供指导,以提高热力学性能。 (C)2019 Elsevier Ltd.保留所有权利。

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