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An experimental study of heat pipe heat exchanger for cooling and dehumidification in an indirect evaporative way

机译:热管换热器间接蒸发冷却除湿的实验研究

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摘要

A study of energy retrofit by combined heat pipe heat exchanger with cold condensate was carried out and results are presented in this paper. The parameters of study including inlet water temperature, water flow rate, primary air velocity, and exhaust air velocity on systems performance are experimentally investigated. Experiment results indicate that for a small condensate flow rate, both the latent heat of exhaust air and sensible heat of condensate can simultaneously be utilized for cooling and dehumidifying primary air, which is expected to be efficient for energy retrofit in central air conditioning systems. Practical application: Cold condensate from Heating, Ventilating, and Air-Conditioning (HVAC) plants are usually discharged or drained off. Reuse of cold condensate not only reduces wastage of water, it also fully utilizes energy and improves overall efficiency of HVAC plants. The installation and capital cost for heat pipe heat exchanger are reasonable. The physical space required is also affordable. Its practical value is useful.
机译:结合热管换热器与冷冷凝水进行了能量改造研究,并给出了结果。对包括进水温度,水流量,一次风速和排气风速在内的研究参数对系统性能进行了实验研究。实验结果表明,在冷凝水流量较小的情况下,排气的潜热和冷凝水的显热可同时用于一次空气的冷却和除湿,这有望对中央空调系统的能源改造产生有效的效果。实际应用:取暖,通风和空调(HVAC)设备中的冷冷凝水通常被排出或排出。再利用冷冷凝水不仅减少了水的浪费,而且还充分利用了能源并提高了暖通空调设备的整体效率。热管换热器的安装和资金成本合理。所需的物理空间也是可以承受的。它的实用价值是有用的。

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