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首页> 外文期刊>Applied Energy >Effects of porous media insert on the efficiency and power density of a high pressure (210 bar) liquid piston air compressor/expander - An experimental study
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Effects of porous media insert on the efficiency and power density of a high pressure (210 bar) liquid piston air compressor/expander - An experimental study

机译:多孔介质插入物对高压(210 bar)液体活塞空气压缩机/膨胀机的效率和功率密度的影响-实验研究

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摘要

A high pressure, efficient and power dense air compressor/expander is a critical element in an isothermal compressed air energy storage (ICAES) system. Heat transfer is often the limiting factor in realizing efficient and power dense compression and expansion processes. Liquid piston compressor/expanders with porous media inserts have been proposed, in which the porous media serves as heat exchangers. While this concept has been studied through modeling and simulation, it has only been validated experimentally at low pressures (10 bar). This paper studies experimentally the effect of porous media in a high pressure (7-210 bar) liquid piston air compressor/expander, which is the proposed pressure for the ICAES system. Cases with the porous media uniformly distributed and non-uniformly distributed in the chamber are studied with various compression and expansion rates. Results show that at 93% efficiency, the uniformly distributed 2.5 mm interrupted plate porous medium increases power density by 10 times in compression and 20 times in expansion; or at the same power, efficiency is increased by 13% in compression and 23% in expansion. Moreover, the porous medium, if deployed at the top of the chamber, is shown to be more effective than if deployed at the bottom. The results indicate that the added surface area provides the dominant benefits but the porous media also increase the heat transfer coefficient at the same efficiency regime. These results are consistent with and extend the findings from previous low pressure experiments.
机译:高压,高效和功率密集的空气压缩机/膨胀机是等温压缩空气能量存储(ICAES)系统中的关键要素。传热通常是实现高效且功率密集的压缩和膨胀过程的限制因素。已经提出了具有多孔介质插入物的液体活塞压缩机/膨胀机,其中多孔介质用作热交换器。虽然已通过建模和仿真研究了此概念,但仅在低压(10 bar)上进行了实验验证。本文实验研究了多孔介质在高压(7-210 bar)液体活塞空气压缩机/膨胀机中的作用,这是ICAES系统建议的压力。研究了具有各种压缩和膨胀率的多孔介质在腔室中均匀分布和不均匀分布的情况。结果表明,在效率为93%时,均匀分布的2.5 mm中断板状多孔介质在压缩时将功率密度提高了10倍,在膨胀时提高了20倍;或在相同功率下,压缩效率提高了13%,膨胀效率提高了23%。此外,多孔介质如果部署在腔室的顶部,则显示出比部署在底部的多孔介质更有效。结果表明,增加的表面积提供了主要优势,但在相同的效率范围内,多孔介质还增加了传热系数。这些结果与先前的低压实验相一致并扩展了其发现。

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