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Study on Optimization of pressure ratio distribution in multistage compressed air energy storage system

机译:多级压缩空气储能系统中压力比分布的优化研究

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Compressed air energy storage is an effective energy storage technology to solve the instability of wind power in distributed energy resources. In this paper, a multistage compressed air energy storage system optimization model is constructed based on the energy conservation equation. Then the system is optimized by differential evolution to improve the system efficiency. Optimal pressure ratios are proposed to distribute the pressures of compressors and expanders. The impact of pressure ratio distribution curve on the system energy efficiency suggests that the change curve of the characteristics vary in different heat exchanger performance. Results show that the change of thermal transfer reactor performance leads to the variety of optimal distribution pressure ratio and energy efficiency of the system. In addition, the differential ratio distribution factor can be effective on the pressure ratio of reasonable allocation. System efficiency optimization results increased by about 1% compared mean value.
机译:压缩空气储能是解决分布式能源中风能不稳定性的有效储能技术。基于能量守恒方程,建立了多级压缩空气储能系统的优化模型。然后通过差分进化对系统进行优化,以提高系统效率。提出了最佳压力比以分配压缩机和膨胀机的压力。压力比分布曲线对系统能效的影响表明,特性变化曲线在不同的换热器性能中会发生变化。结果表明,传热反应器性能的变化导致最佳分配压力比和系统能量效率的变化。另外,微分比分配因子可以对合理分配的压力比有效。系统效率优化结果与平均值相比增加了大约1%。

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