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The heat transfer coefficient determination with the use of the Beck-Trefftz method in flow boiling in a minichannel

机译:使用Beck-Trefftz方法在Miniocannel中沸腾中的使用Beck-Trefftz方法的传热系数确定

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In this paper, the solution of the two-dimensional inverse heat transfer problem with the use of the Beck method coupled with the Trefftz method is proposed. This method was applied for solving an inverse heat conduction problem. The aim of the calculation was to determine the boiling heat transfer coefficient on the basis of temperature measurements taken by infrared thermography. The experimental data of flow boiling heat transfer in a single vertical minichannel of 1.7 mm depth, heated asymmetrically, were used in calculations. The heating element for two refrigerants (FC-72 and HFE-7100, 3M) flowing in the minichannel was the plate enhanced on the side contacting with the fluid. The analysis of the results was performed on the basis of experimental series obtained for the same heat flux and two different mass flow velocities. The results were presented as infrared thermographs, heated wall temperature and heat transfer coefficient as a function of the distance from the minichannel inlet. The results was discussed for the subcooled and saturated boiling regions separately.
机译:在本文中,提出了使用与Trefftz方法耦合的Beck方法的二维反热传递问题的解决方案。施加该方法以求解逆热传导问题。计算的目的是基于红外热成像的温度测量来确定沸腾的传热系数。在计算中,在1.7mm深度为1.7mm深度的单个垂直迷你录像机中的流动沸腾热传递的实验数据在计算中使用。用于在迷你烷基中流动的两个制冷剂(FC-72和HFE-7100,3M)的加热元件是板材在与流体接触的侧面上增强。对结果的分析是基于用于相同热通量和两种不同质量流速获得的实验系列。结果呈现为红外温度计,加热的壁温和传热系数,作为距距近米远通道入口的距离的函数。结果分别讨论过冷却和饱和沸点。

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