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Thermo-fluid dynamic analysis of wet compression process

机译:湿法压缩过程的热流体动力学分析

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摘要

Wet compression systems increase the useful power output of a gas turbine by reducing the compressor work through the reduction of air temperature inside the compressor. The actual wet compression process differs from the conventional single phase compression process due to the presence of latent heat component being absorbed by the evaporating water droplets. Thus the wet compression process cannot be assumed isentropic. In the current investigation, the gas-liquid two phase has been modeled as air containing dispersed water droplets inside a simple cylinder-piston system. The piston moves in the axial direction inside the cylinder to achieve wet compression. Effects on the thermodynamic properties such as temperature, pressure and relative humidity are investigated in detail for different parameters such as compression speeds and overspray. An analytical model is derived and the requisite thermodynamic curves are generated. The deviations of generated thermodynamic curves from the dry isentropic curves (PV gamma = constant) are analyzed.
机译:湿压缩系统通过降低压缩机内部的空气温度来减少压缩机的工作量,从而增加了燃气轮机的有用功率输出。实际的湿式压缩过程与常规的单相压缩过程不同,这是因为存在潜在的热成分被蒸发的水滴吸收。因此,不能假定湿压缩过程是等熵的。在当前的研究中,气液两相已被建模为一个空气,其中空气包含在简单的汽缸-活塞系统内。活塞在气缸内沿轴向移动以实现湿压缩。对于不同的参数(例如压缩速度和过喷),详细研究了对热力学特性(如温度,压力和相对湿度)的影响。导出分析模型,并生成必要的热力学曲线。分析了生成的热力学曲线与干等熵曲线(PV gamma =常数)的偏差。

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