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Measurements of the convection heat transfer coefficient for a planar wall jet: uniform temperature and uniform heat flux boundary conditions

机译:平面壁射流的对流传热系数的测量:均匀的温度和均匀的热通量边界条件

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摘要

The local heat transfer coefficients for isothermal and uniform heat flux boundary conditions for a planar wall jet have been determined experimentally. Hot-wire anemometry surveys were used to quantify the velocity field in the wall jet. A micro-thermocouple was used to quantify the temperature field in the wall jet for the isothermal boundary condition. Infrared (IR) imaging was applied to measure the wall temperature for the uniform heat flux boundary condition. The difference in the local convection coefficients due to the different thermal boundary conditions was largest at the leading edge of the heated wall, becoming insignificant for non-dimensional streamwise locations exceeding approximately four slot widths away from the exit plane of the jet. The present results are for non-dimensional streamwise locations that are relevant to automotive windshield defogging/defrosting, which serves as the technological motivation for this study. Specifically, these results are for small non-dimensional streamwise locations compared to those in the published literature. (C) 2000 Elsevier Science Inc. All rights reserved. [References: 13]
机译:实验确定了平面壁射流的等温和均匀热通量边界条件的局部传热系数。使用热线风速测量来量化壁射流中的速度场。对于等温边界条件,使用微热电偶来定量壁射流中的温度场。应用红外(IR)成像来测量均匀热通量边界条件下的壁温。由于不同的热边界条件而导致的局部对流系数差异在加热壁的前缘处最大,对于在距离射流出口平面超过大约四个狭缝宽度的无尺寸流向位置而言,这变得无关紧要。目前的结果是针对与汽车挡风玻璃除雾/除霜相关的无量纲沿河道位置,这是本研究的技术动机。具体而言,与已公开文献中的结果相比,这些结果适用于较小的无量纲的沿河方向分布。 (C)2000 Elsevier Science Inc.保留所有权利。 [参考:13]

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