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首页> 外文期刊>International Journal of Thermal Sciences >Heat transfer and pressure drop studies on a PCM-heat exchanger module for free cooling applications
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Heat transfer and pressure drop studies on a PCM-heat exchanger module for free cooling applications

机译:用于自然冷却应用的PCM热交换器模块上的传热和压降研究

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Free cooling/Night ventilation is the process of storing the cool energy available in the night time ambient air in a storage device. During the day time the cool energy is retrieved from the storage device in order to cool the building using mechanical ventilation system. The modular heat exchanger developed in this work is a shell and tube type with phase change materials in the shell portion of the module and passage for the flow of air through the tubes. The modules of the modular heat exchanger are stacked one over other with air spacers in between each module. This modular heat exchanger arrangement is suitable for free cooling application where the diurnal temperature variation is low. Transient and steady state CFD modeling is carried out for a single module and two air spacers. Conjugate heat transfer analysis is carried out for the fluid and PCM of heat exchanger module. The latent heat value of the PCM is modeled using apparent heat capacity method with suitable profile approximated from the experimental results. The CFD results are validated with the experimental results. The steady state CFD analysis is useful to determine the pressure drop across the module and the spacers and to know the flow and temperature variation of heat transfer fluid in the module so as to select the geometrical and flow parameters for a given surface temperature and inlet condition. The transient analysis results are useful to determine the PCM solidification characteristics and to verify the suitability of the selected geometrical dimensions. The air spacers provided between the module increases the retention time of the air for better heat transfer and its effect is more pronounced at the lower velocities and decreases as the frontal velocity increases and its effect is negligible above the frontal velocity of 2 m/s.
机译:自由冷却/夜间通风是将夜间环境空气中可用的冷能存储在存储设备中的过程。在白天,从存储设备中获取冷能,以便使用机械通风系统为建筑物降温。在这项工作中开发的模块化热交换器是壳管式的,在模块的壳部分中具有相变材料,空气通过管的通道通过。模块化热交换器的模块彼此堆叠,每个模块之间有空气垫片。该模块化换热器装置适用于昼夜温度变化低的自然冷却应用。对单个模块和两个空气垫片进行了瞬态和稳态CFD建模。对热交换器模块的流体和PCM进行共轭传热分析。 PCM的潜热值采用表观热容法建模,并从实验结果近似得出合适的轮廓。 CFD结果已通过实验结果验证。稳态CFD分析对于确定模块和垫片之间的压降以及了解模块中传热流体的流量和温度变化非常有用,以便为给定的表面温度和入口条件选择几何和流量参数。瞬态分析结果对于确定PCM的凝固特性以及验证所选几何尺寸的适用性很有用。设置在模块之间的空气垫片增加了空气的滞留时间,以实现更好的热传递,并且其作用在较低的速度下更加明显,并且随着正面速度的增加而降低,并且在正面速度2 m / s以上时其影响可忽略不计。

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