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Experimental study of mixed convection heat transfer in a vertical channel with a one-sided semicylindrical constriction with prescribed heat flux

机译:规定热通量的单侧半圆柱收缩垂直通道内混合对流换热的实验研究

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An experimental study of mixed convection heat transfer is carried out in a vertical channel with a one-sided semicylindrical constriction with prescribed heat flux while the other bounding walls are insulated and adiabatic. The semicylinder is placed horizontally at the mid-plane with a blockage ratio (BR, ratio between the semicylinder diameter and the thickness of the rectangular section) of 0.3 and a semicylinder aspect ratio (AR, ratio between the length and diameter of the semicylinder) of 6. The effect of opposing buoyancy on the flow and thermal behavior is analyzed for fixed Prandtl number of Pr = 7, Reynolds number based on semicylinder diameter of 20 <= Re <= 350 and buoyancy strength or modified Richardson number, Ri* = Gr*/Re-2, from 20 to 350. For relatively large values of Ri*, flow visualization images and thermal analysis confirm the presence of a complex three-dimensional (3D) two-vortex structure with two recirculation bubbles present at the forebody and rear of the semicylinder. Surface temperature distributions and averaged Nusselt number at different Reynolds and modified Richardson numbers have been obtained. The results show that variation of the local temperature distributions with angular position and spanwise location become evident, and their relation to the presence of a complex 3D vortex structure that develops close to the semicylindrical constriction has been studied and discussed in detail. Moreover, empirical correlations for the overall Nusselt number are obtained using both Re and Gr* and Re and Ri* as the controlling parameters. (C) 2017 Elsevier Inc. All rights reserved.
机译:混合对流传热的实验研究是在一个垂直通道中进行的,该通道的一侧为半圆柱形收缩,并具有规定的热通量,而其他边界墙则是绝热的且绝热的。将半圆柱体在中平面水平放置,其堵塞比(BR,半圆柱体直径与矩形截面的厚度之比)为0.3,半圆柱体长宽比(AR,半圆柱体的长度与直径之比)图6。针对固定的Prandtl值Pr = 7,分析了反向浮力对流动和热行为的影响,该值基于半圆柱直径20 <= Re <= 350的雷诺数和浮力强度或修正的Richardson数,Ri * = Gr * / Re-2,从20到350。对于较大的Ri *值,流动可视化图像和热分析确定了存在复杂的三维(3D)两涡结构,在前体处存在两个再循环气泡和半圆柱的后部。获得了不同雷诺数和修正的理查森数的表面温度分布和平均努塞尔数。结果表明,局部温度分布随角位置和翼展方向位置的变化变得明显,并且已经研究并详细讨论了它们与复杂的3D涡旋结构的存在的关系,该结构靠近半圆柱体收缩而发展。此外,使用Re和Gr *以及Re和Ri *作为控制参数,获得了总Nusselt数的经验相关性。 (C)2017 Elsevier Inc.保留所有权利。

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