首页> 外文会议>International Conference on Microchannels and Minichannels(ICMM2004); 20040617-20040619; Rochester,NY; US >COMPARISON OF NUMERICAL SIMULATION AND EXPERIMENTAL RESULTS FOR CROSSFLOW AND COUNTERFLOW MICROCHANNEL HEAT EXCHANGERS
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COMPARISON OF NUMERICAL SIMULATION AND EXPERIMENTAL RESULTS FOR CROSSFLOW AND COUNTERFLOW MICROCHANNEL HEAT EXCHANGERS

机译:横流与逆流微通道换热器的数值模拟与实验结果比较

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At the Institute for Micro Process Engineering of the Forschungszentrum Karlsruhe, micro heat exchangers are manufactured out of single foils of base metal alloys. The characterisation of the thermohydraulic properties of microchannel heat exchangers is done using water as heat transfer medium on both passages at temperatures of 10℃ and 95℃. The present publication will give an overview of the numerical simulation as well as experimental results for crossflow and counterflow microchannel heat exchangers. A comparison of three crossflow heat exchangers with different microchannel structures, and two different types of counterflow microchannel heat exchangers is shown. For comparison, the heat iransfer rate, the overall heat transfer coefficients and efficiencies as well as pressure drop obtained from experiment and theory is shown. For numerical simulation, two models have been used. An easily accessibly method is to use classical engineering codes based on the Nusselt theory (VDI Waermeatlas, 1994). A more detailed model is to use computational fluid dynamics (CFD) with the commercially available tool FLUENT ~R, where best estimation codes have been applied for numerical simulation. Both numerical calculations are a helpful complement to predict thermal and hydrodynamic behaviour of the microchannel heat exchangers.
机译:在卡尔斯鲁厄Forschungszentrum的微工艺工程研究所,微型热交换器是由贱金属合金的单箔制成的。在10℃和95℃的温度下,两个通道的水都以传热介质为水,对微通道换热器的热工水力特性进行了表征。本出版物将概述横流和逆流微通道换热器的数值模拟以及实验结果。显示了具有不同微通道结构的三个错流热交换器和两种不同类型的逆流微通道热交换器的比较。为了进行比较,显示了从实验和理论获得的传热速率,总传热系数和效率以及压降。对于数值模拟,使用了两个模型。一种容易访问的方法是使用基于Nusselt理论的经典工程代码(VDI Waermeatlas,1994)。更详细的模型是将计算流体动力学(CFD)与可商购的工具FLUENT〜R一起使用,其中最佳估算代码已应用于数值模拟。两种数值计算都有助于预测微通道换热器的热行为和流体力学行为。

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