首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >THE EFFECTIVENESS-NTU RELATIONSHIP OF MICROCHANNEL COUNTER FLOW HEAT EXCHANGERS WITH AXIAL HEAT CONDUCTION
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THE EFFECTIVENESS-NTU RELATIONSHIP OF MICROCHANNEL COUNTER FLOW HEAT EXCHANGERS WITH AXIAL HEAT CONDUCTION

机译:轴向传热的微通道逆流换热器的效率-NTU关系

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In this paper the effect of axial heat conduction on the thermal performance of a microchannel heat exchanger with non-adiabatic end walls is studied. The two ends of the wall separating the coolant are assumed to be subjected to boundary condition of the first kind. As the end walls are not insulated heat transfer between the microchannel heat exchanger and its surroundings occur. Analytical equations have been formulated for predicting the axial temperature of the coolants and the wall as well as for determining the effectiveness of both fluids. The effectiveness of the fluids has been found to depend on the NTU, axial heat conduction parameter and end wall temperatures. The heat transfer through the end walls have been expressed in nondimensional terms. The nondimensional heat transfer from both ends of the wall also depends on the axial heat conduction parameter and temperature gradient at the end walls. A new parameter, performance factor, has been proposed for comparing the variation in effectiveness due to axial heat conduction coupled with heat transfer with the effectiveness without axial heat conduction. The effectiveness of both the hot and cold fluid for several cases of end wall temperatures and axial heat conduction parameter are analyzed in this paper for better understanding of heat transfer dynamics of microchannel heat exchangers.
机译:本文研究了轴向传热对具有非绝热端壁的微通道换热器热性能的影响。假定分隔冷却剂的壁的两端处于第一类边界条件。由于端壁不是绝缘的,因此在微通道热交换器及其周围环境之间发生热传递。已经建立了用于预测冷却剂和壁的轴向温度以及确定两种流体的有效性的分析方程式。已经发现流体的有效性取决于NTU,轴向热传导参数和端壁温度。通过端壁的热传递已用无量纲表示。来自壁两端的无量纲热传递还取决于轴向热传导参数和端壁处的温度梯度。已经提出了一个新的参数,性能因数,用于将轴向热传导与传热耦合产生的有效性变化与没有轴向热传导的有效性进行比较。为了更好地了解微通道换热器的传热动力学,本文分析了冷热流体在几种端壁温度和轴向导热参数情况下的有效性。

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