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VALIDATION STUDY FOR VOF SIMULATIONS OF BOILING IN A MICROCHANNEL

机译:微通道中沸腾模拟的验证研究

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This paper presents a comparison of Volume-of-Fluid simulation results with experiments for two-phase flow and heat transfer in a micro channel. Mass transfer between the phases is modeled using a reduced-order model, requiring the definition of a time relaxation constant, r. A two-step solution procedure is used, where first a fixed temperature boundary condition is imposed at the heater to avoid overheating of the device during the initial development of the two-phase flow. After obtaining a quasi-steady-state solution this is changed to a heat flux boundary condition to determine the final solution. Results using three different values for r indicate that the value of the constant should vary throughout the domain. A final simulation where r is defined as a function of the streamwise location results in a prediction of the base temperature within 1K of the experimental result, a pressure drop within 30%, and a prediction of the location of transition from subcooled to saturated flow within 2mm.
机译:本文介绍了流体体积模拟结果与微通道两相流动和传热实验的比较。使用降阶模型对相之间的传质进行建模,要求定义时间弛豫常数r。使用两步求解程序,其中首先在加热器上施加固定的温度边界条件,以避免在两相流的初始发展过程中设备过热。在获得准稳态解之后,将其更改为热通量边界条件,以确定最终解。对r使用三个不同值的结果表明,该常数的值应在整个域中变化。最终模拟(其中r被定义为流向位置的函数)可预测基本温度在实验结果的1K以内,压降在30%以内,并预测在其中过冷至饱和流的过渡位置2毫米

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