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STUDY OF HEAT TRANSFER AND PRESSURE DROP CHARACTERISTICS OF AIR HEAT EXCHANGER USING PCM FOR FREE COOLING APPLICATIONS

机译:自由冷却应用PCM的换热器传热及压降特性研究

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摘要

Free cooling is the process of storing the cool energy available in the night ambient air and using it during the day. The heat exchanger used in this work is a modular type which is similar to the shell and tube heat exchanger. The shell side is filled with Phase Change Materials (PCM) and air flow is through the tubes in the module. The modules of the heat exchanger are arranged one over other with air spacers in between each module. The air space provided in between the module in-creases the retention time of the air for better heat transfer. Transient Computational Fluid Dynamics modeling is carried out for single air passage in a modular heat exchanger. It shows that the PCM phase transition time in the module in which different shape of fins is adopted. The module with rectangular fins has 17.2 % reduction in solidification compared with the plain module. Then steady state numerical analysis is accomplished to the whole module having the fin of high heat transfer, so that pressure drop, flow and thermal characteristics across the module and the air spacers are deter-mined for various air inlet velocities of 0.4 to 1.6 m/s. To validate the computational results, experiments are carried out and the agreement was found to be good.
机译:自然冷却是指将夜间可用的冷能存储在夜间并在白天使用的过程。这项工作中使用的热交换器是模块化的,类似于壳管式热交换器。壳侧充满相变材料(PCM),气流通过模块中的管子。热交换器的模块彼此并排布置,在每个模块之间具有空气垫片。模块之间提供的空气空间会增加空气的停留时间,从而实现更好的热传递。瞬态计算流体动力学建模是针对模块化热交换器中的单个空气通道进行的。这表明采用不同形状的鳍片的模块中的PCM相变时间。与普通模块相比,带有矩形散热片的模块的固化减少了17.2%。然后,对具有高传热翅片的整个模块进行稳态数值分析,以便针对0.4至1.6 m / m的各种进气速度确定整个模块和空气隔板的压降,流量和热特性。 s。为了验证计算结果,进行了实验,发现一致性良好。

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