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Modelling of a Two-Phase Thermosyphon Loop for Passive Air-Conditioning of a House in Hot and Dry Climate Countries

机译:炎热和干旱气候国家的房屋被动空调的两相热烃环的建模

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The two-phase thermosyphon loop is an efficient solution for space cooling. This paper presents the simulation results of numerical studies on the heat transfer and thermal performance of a two-phase thermosiphon loop for passive air-conditioning of a house. The fluid considered in this study is methanol, which is compatible with copper and is environmentally friendly. These numerical results show that the temperature at the evaporator wall drops from 23 ° C to 13 ° C and increases at the condenser. The solar flux density has a strong influence on the condenser temperature. The mass flow rates and masses at the evaporator and condenser increase with temperature. The variation of evaporating and condensing temperature affects the performance of the system. For a constant evaporating and condensing temperature of 2 ° C and 29 ° C, the COP is 0.77 and 0.84 respectively. With these results, the use of the two-phase thermosyphon loop in air conditioning is possible to obtain a thermal comfort of the occupants acceptable by the standards but with a large exchange surface of the evaporator.
机译:两相热芯环是空间冷却的有效解决方案。本文介绍了房屋无源空调的两相热虹吸环传热和热性能的数值研究的仿真结果。本研究中考虑的液体是甲醇,与铜相容,环保。这些数值结果表明,蒸发器壁的温度从23℃降至13℃并在冷凝器上增加。太阳能磁通密度对冷凝器温度有很大影响。蒸发器的质量流量和质量和冷凝器随温度而增加。蒸发和冷凝温度的变化影响了系统的性能。对于2℃和29℃的恒定蒸发和冷凝温度,COP分别为0.77和0.84。通过这些结果,在空调中使用两相热脊柱回路可以获得标准可接受的乘员的热舒适性,但是蒸发器的大交换表面。

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