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Heat-transfer Characteristics of Polymer Hollow Fiber Heat Exchanger for Vaporization Application

机译:汽化应用的聚合物中空纤维换热器的传热特性

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The heat-transfer characteristics of polymer hollow fiber heat exchanger were investigated by analyzing the heat-transfer coefficient (HTC) and the heat-transfer resistance (HTR) distributions of both the lumen side and the shell side. The influences of the fiber wall thickness and the polymer thermal conductivity on the heat-transfer performance were studied numerically based on the experimental validated simulation model. It is found that the original overall HTC value is below 1032 W/m(2).K and the HTR is focus on the fiber wall. However, if enhancing the polymer thermal conductivity to be higher than 1.0 W/m.K and/or lowering the fiber wall thickness to be less than 0.1 mm, the overall HTC could be improved to over 2000 W/m(2).K, which indicates that the fiber wall HTR is no longer the limiting factor of the polymer hollow fiber heat exchanger applications. (C) 2017 American Institute of Chemical Engineers
机译:通过分析腔侧和壳侧的传热系数(HTC)和传热性能(HTR)分布来研究聚合物中空纤维热交换器的传热特性。 基于实验验证的仿真模型,对纤维壁厚和聚合物导热系对传热性能的影响。 发现原始的总体HTC值低于1032 W / m(2).k,HTR专注于纤维墙。 然而,如果将聚合物导热率提高至1.0W / mk和/或将纤维壁厚度降低至小于0.1mm,则总HTC可以改善为超过2000w / m(2).k, 表示光纤壁HTR不再是聚合物中空纤维换热器应用的限制因素。 (c)2017美国化学工程师研究所

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