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Experiments for suitability of plastic heat exchangers for dehumidification applications

机译:用于除湿应用的塑料换热器适用性的实验

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摘要

The present study conducted a series of experiments concerning the condensation of humid air used in a typical adsorption dehumidifier. The experiments were carried out with the standard ambient condition (27 degrees C dry bulb temperature and 21.2 degrees C wet bulb temperature) for the cold side. Yet the regeneration side (hot side) inlet temperature is 55 degrees C with RH% being 100%. Three novel plastic heat exchangers (plate plastic heat exchanger-PHX, bare tube plastic heat exchanger with asymmetry tube layout-BTHX, and round tube plastic heat exchanger with uniform tube layout-RTHX) were tested and compared experimentally. Test results, in terms of heat flux or heat transfer coefficient, show that the BTHX is superior to RTHX and PHX for offering additional condensate splashing mode. The splashing feature is especially beneficial for larger cold side flow rate since the plateau of heat transfer performance is moved toward larger cold side flow rate regime. The asymmetry tube geometry design (BTHX) shows even better heat transfer performance than the uniform tube bundle design (RTHX) for providing more space at the downstream of the tube bundle.
机译:本研究对典型吸附除湿器中使用的湿空气的冷凝进行了一系列实验。该实验与冷侧的标准环境条件(27摄氏度干泡温度和21.2摄氏度温度)进行。然而,再生侧(热侧)入口温度为55℃,RH%为100%。三种新型塑料换热器(板塑料热交换器-PHX,带有不对称管布置-BTHX的裸管塑料热交换器和具有均匀管布置-RTHX的圆管塑料热交换器)并实验比较。在热通量或传热系数方面测试结果表明,BTHX优于RTHX和PHX,用于提供额外的冷凝水溅模式。由于传热性能平台移动到较大的冷侧流量方案,飞溅特征特别有利于较大的冷侧流量。不对称管几何设计(BTHX)表示比均匀的管束设计(RTHX)更好地传热性能,用于在管束下游提供更多空间。

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