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EFFECT OF MOISTURE ON THE EFFICIENCY AND POWER DENSITY OF A LIQUID PISTON AIR COMPRESSOR/EXPANDER

机译:水分对液体活塞式空气压缩机/膨胀机效率和功率密度的影响

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For a compressed air energy storage (CAES) system to be competitive for the electrical grid, the air compressor/expander must be capable of high pressure, efficient and power dense. However, there is a trade-off between efficiency and power density mediated by heat transfer, such that as the process time increases, efficiency increases at the expense of decreasing power. This trade-off can be mitigated in a liquid (water) piston air-compressor/expander with enhanced heat transfer. However, in the past, dry air has been assumed in the design and analysis of the compression/expansion process. This paper investigates the effect of moisture on the compression efficiency and power. Evaporation and condensation of water play contradictory roles - while evaporation absorbs latent heat enhancing cooling, the tiny water droplets that form as water condenses also increase the apparent heat capacity. To investigate the effect of moisture, a 0-D numerical model that takes into account the water evaporation/condensation and water droplets have been developed. Results show that inclusion of moisture improves the efficiency-power trade-off minimally at lower flow rates, high efficiency cases, and more significantly at higher flow rates, lower efficiency cases. The improvement is primarily attributed to the increase in apparent heat capacity due to the increased propensity of water to evaporate.
机译:对于压缩空气储能(CAES)系统对电网具有竞争力,空气压缩机/膨胀机必须能够高压,高效和电力密度。然而,在通过传热介导的效率和功率密度之间存在权衡,使得随着过程时间增加,效率以牺牲电量降低而增加。这种折磨可以在液体(水)活塞空气压缩机/膨胀器中减轻,具有增强的传热。然而,在过去,在压缩/膨胀过程的设计和分析中假设干燥空气。本文研究了水分对压缩效率和功率的影响。蒸发和凝结水矛盾作用 - 虽然蒸发吸收潜热增强冷却,其作为水凝结的微小水滴也增加了表观热量。为了研究水分的影响,已经开发了考虑水蒸发/冷凝和水滴的0-D数值模型。结果表明,含水量在较低的流量率,高效率案例中更低,更高的流量速度,更高的流量速度,较低的效率均显着提高效率 - 功率折衷。改善主要归因于由于增加的水蒸发倾向而增加表观热容量。

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