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Theoretical and experimental studies of crossflow minichannel heat exchanger subjected to external heat ingress

机译:横流微通道换热器受外界热影响的理论与实验研究

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摘要

The effect of heat in-leak, an unavoidable phenomenon occurring due to the temperature difference between the system and its surroundings, has been studied for two-stream crossflow minichannel heat exchangers with unmixed fluids. Assuming that the amount of heat in-leak is known, an analytical expression for the normalised temperature difference between hot and cold fluids has been derived in terms of dimensionless parameters. The analytical results, in conjugation with the area partitioning of crossflow heat exchanger both in x and y directions, have been used for predicting the outlet fluid temperatures. On the experimental part, one of the end plates in a crossflow-type multistream, minichannel heat exchanger has been subjected to deliberate external heat input given electrically. The variation in the exit fluid temperatures has been recorded as a function of this external heat in-leak entering the exchanger through one of its outer surfaces. Experimental data obtained is employed to validate the fluid exit temperatures predicted by the developed model under the same conditions of external heat ingress. (C) 2014 Elsevier Ltd. All rights reserved.
机译:对于带有未混合流体的两流错流微型通道换热器,已经研究了由于系统与周围环境之间的温差而导致的不可避免的热泄漏现象。假设泄漏的热量已知,则根据无量纲参数得出了热流体和冷流体之间的标准化温度差的解析表达式。结合横流热交换器在x和y方向上的区域划分,分析结果已用于预测出口流体温度。在实验部分,横流式多流微通道换热器中的一个端板已接受有意的外部电输入。已经记录了出口流体温度的变化,该变化是通过该热交换器的外表面之一进入热交换器的外部热泄漏引起的。使用获得的实验数据来验证在相同的外部热量进入条件下,由开发的模型预测的流体出口温度。 (C)2014 Elsevier Ltd.保留所有权利。

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