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Investigation on performance improvement of small scale compressed-air energy storage system based on efficient radial-inflow expander configuration

机译:基于高效径向流入膨胀机配置的小型压缩空气储能系统性能改进研究

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摘要

Distributed power generation systems powered by compressed air energy storage can be considered as one of the effective solutions for high energy demand. In this regard, the key component for such systems is the expander where the overall system efficiency has been affected by the expander performance. Therefore, this work outlines a novel integrated methodology to predict the performance characteristics of the radial-inflow expander for small scale compressed air energy storage CAES system for low mass flow rate applications. The integrated methodology combines the mean-line design and 3D CFD simulations for the expander with thermodynamics analysis for CAES system. The expander mean-line design is verified against the data available in open literature and compared with the delivered results from the CFD simulations using ANSYS-CFX. Moreover, comprehensive parametric studies are carried out based on the CFD analyses under design and off-design conditions in terms of rotational speed, expander inlet temperature and expansion ratio in order to investigate the effect of those conditions beside the geometric parameters on the expander and system performance. The delivered results from CFD simulations and CAES system analyses highlighted that radial-inflow expander with CAES can be used for distributed power generation. The expander performance maps based on CFD analyses exhibited that the maximum power and efficiency were 3.282 kW and 76.70% respectively with CASE system efficiency of 12.46% and the system round trip efficiency of 59.08%.
机译:由压缩空气储能驱动的分布式发电系统可以被视为满足高能量需求的有效解决方案之一。在这方面,此类系统的关键组件是扩展器,扩展器的性能影响了整个系统的效率。因此,这项工作概述了一种新颖的集成方法,可预测用于小流量应用的小规模压缩空气储能CAES系统的径向流入膨胀机的性能特征。集成方法将扩展器的均值线设计和3D CFD仿真与CAES系统的热力学分析相结合。扩展器的中线设计已根据公开文献中的数据进行了验证,并与使用ANSYS-CFX进行的CFD仿真得出的结果进行了比较。此外,基于CFD分析,在设计和非设计条件下,根据转速,膨胀机入口温度和膨胀率进行了全面的参数研究,以便研究这些条件以及几何参数对膨胀机和系统的影响性能。 CFD仿真和CAES系统分析的结果表明,带有CAES的径向流入膨胀机可用于分布式发电。基于CFD分析的膨胀机性能图显示,最大功率和效率分别为3.282 kW和76.70%,CASE系统效率为12.46%,系统往返效率为59.08%。

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