首页> 外文会议>ASME gas turbine India conference >PERFORMANCE IMPROVEMENT OF GAS TURBINE POWER PLANT BY INTAKE AIR PASSIVE COOLING USING PHASE CHANGE MATERIAL BASED HEAT EXCHANGER
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PERFORMANCE IMPROVEMENT OF GAS TURBINE POWER PLANT BY INTAKE AIR PASSIVE COOLING USING PHASE CHANGE MATERIAL BASED HEAT EXCHANGER

机译:使用基于相变材料的换热器引入空气被动冷却来改善燃气轮机的性能

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The power output of a gas turbine plant decreases with the increase in ambient temperature. Moreover, the ambient temperature fluctuates about 15-20°C in a day. Hence, cooling of intake air makes a noticeable improvement to the gas turbine performance. In this regard, various active cooling techniques such as vapor compression refrigeration, vapor absorption refrigeration, vapor adsorption refrigeration and evaporative cooling are applied for the cooling of intake air. This paper presents a new passive cooling technique where the intake air temperature is reduced by incorporating phase change material (PCM) based heat exchanger parallel to conventional air intake line. During the daytime, the air is passed through the PCM which has melting temperature lower than the peak ambient temperature. This will reduce the ambient air temperature before taking to the compressor. Once the PCM melts completely, the required ambient air would be drawn from the ambient through conventional air intake arrangement. During the night, when there is lower ambient temperature, PCM converts from liquid to solid. The selected PCM has a melting temperature less than the peak ambient temperature and higher than the minimum ambient temperature. It is observed from the numerical modeling of the PCM that about four hours are required for the melting of PCM and within this time, the intake air can also be cooled by 5°C. The thermodynamic analysis of the results showed about 5.2% and 5.2% improvement in net power output and thermal efficiency, respectively for four hours at an ambient temperature of 45°C.
机译:燃气轮机设备的功率输出随着环境温度的升高而降低。此外,环境温度每天会波动约15-20°C。因此,进气的冷却显着改善了燃气轮机的性能。在这方面,各种主动冷却技术,例如蒸气压缩致冷,蒸气吸收致冷,蒸气吸附致冷和蒸发冷却被应用于冷却进气。本文提出了一种新的被动冷却技术,该技术通过结合与传统进气管线平行的基于相变材料(PCM)的热交换器来降低进气温度。在白天,空气流经熔化温度低于峰值环境温度的PCM。这将降低进入压缩机之前的环境空气温度。一旦PCM完全融化,所需的环境空气将通过常规进气装置从环境中抽出。在夜间,当环境温度较低时,PCM从液体转变为固体。选定的PCM的熔化温度低于峰值环境温度,而高于最低环境温度。从PCM的数值模型可以看出,PCM的熔化大约需要四个小时,并且在这段时间内,进气也可以冷却到5℃。结果的热力学分析表明,在45°C的环境温度下,四个小时的净功率输出和热效率分别提高了5.2%和5.2%。

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