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Buoyancy convection in a square cavity with mutually orthogonal heat generating baffles

机译:具有相互正交的发热挡板的方腔中的浮力对流

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A two-dimensional numerical solution for buoyancy induced convection in a square cavity with discretely heat generating baffles is presented in the context of cooling of electronic equipments. The walls of the cavity are subjected to either isothermal temperature or outward isoflux. The Grashof number and Prandtl number are fixed at 10~6 and 0.71, respectively. The effects of different locations of the baffles are reported in terms of streamlines and temperature contours. The results obtained clearly show that the fluid flow and temperature fields strongly depend on location of the baffles. The movement of either the horizontal or vertical plate produces no significant changes in the overall heat transfer rate except when one of them is wall mounted in the presence of isothermal cavity walls. In the case of isoflux cavity walls the overall heat transfer rate gets suppressed for the upward movement of the horizontal baffle and enhanced for the horizontal movement of the vertical baffle in the core region of the cavity. When one of the baffles moves closer to a cavity wall thermal boundary layer is formed and hence conduction becomes dominant in between them in the case of isothermal cavity walls. But in general the presence of isoflux cavity walls arrests crowding of isotherms.
机译:在电子设备冷却的背景下,提出了具有离散生热挡板的方腔内浮力对流的二维数值解。空腔的壁承受等温温度或向外等通量。 Grashof数和Prandtl数分别固定为10〜6和0.71。根据流线和温度等高线报告了挡板不同位置的影响。获得的结果清楚地表明,流体流场和温度场强烈取决于挡板的位置。水平板或垂直板的移动不会对整体传热率产生任何显着变化,除非其中之一在等温腔壁存在的情况下壁装。在等通孔腔壁的情况下,对于水平隔板的向上运动,总传热率受到抑制,而对于垂直隔板的水平运动,则在腔体的核心区域内提高了总传热率。当挡板之一靠近腔壁时,形成了热边界层,因此在等温腔壁的情况下,它们之间的传导占主导地位。但是总的来说,等流量腔壁的存在阻止了等温线的拥挤。

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