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Performance analysis on a Compressed Humid Air Energy Storage System

机译:压缩湿空气储能系统的性能分析

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With the growing need for the use of electricity, power plants sometimes cannot generate enough power during the high demand periods. Thus various methods are introduced to solve this situation. Compressed air energy storage (CAES) technology seems to be a good solution to both peaking power demand and intermittent energy utilization transformed from renewable energy source like wind energy. Utilization of heat generated from the air compression process is a crucial problem of this technology. A compressed air energy storage system, with humid air as working fluid, is designed in this paper. In this system, heat of compressing air is transformed to the latent heat of water vapour, decreasing the power consumption of compressor and increasing energy generated per volume of storage. A Compressed Humid Air Energy Storage (CHAES) system model is established in this paper to simulate the performance of this system. Then the performance of this new system is evaluated by comparison to conventional CAES system, based on the simulation result. The result of this paper confirm the growing interest to CAES as a solution to peaking power demand and intermittent energy utilization, and indicates that CHAES system, as a great improvement of CAES system, has huge potential in the future.
机译:随着对电力使用需求的不断增长,发电厂有时无法在高需求时期内产生足够的电力。因此,引入了各种方法来解决这种情况。压缩空气能量存储(CAES)技术似乎是峰值功率需求和由可再生能源(例如风能)转换而来的间歇性能源利用的良好解决方案。利用空气压缩过程中产生的热量是该技术的关键问题。本文设计了一种以湿空气为工作流体的压缩空气储能系统。在该系统中,压缩空气的热量转化为水蒸气的潜热,从而降低了压缩机的功耗并增加了每单位存储量产生的能量。本文建立了压缩湿空气储能(CHAES)系统模型,以模拟该系统的性能。然后,基于仿真结果,通过与常规CAES系统进行比较来评估该新系统的性能。本文的结果证实了对CAES作为峰值功率需求和间歇性能源利用解决方案的兴趣日益浓厚,并表明CHAES系统作为CAES系统的重大改进,在未来具有巨大的潜力。

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