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Numerical simulation of boundary conditions and the onset of instability in natural convection due to protruding thermal sources in an open rectangular channel

机译:边界条件的数值模拟和由于开放矩形通道中热源的突出而导致自然对流不稳定的开始

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摘要

Two-dimensional natural-convection heat transfer to air from multiple identical protruding heat sources, which simulate electronic components, located in a horizontal channel which is open on both sides, has been studied numerically. Of particular interest is the accurate simulation of realistic boundary conditions in such a channel. The effects of source temperatures, channel dimensions, openings, boundary conditions, and source locations on the heat transfer from and flow above the protruding sources are investigated, and the onset of instability is studied. The results indicate that the channel dimensions and the presence of openings have significant effects on the fluid flow. However, their effects on heat transfer are found to be relatively small. The increase in channel height is seen to lead to a less stable flow and, consequently, a decrease in the critical Grashof number. Numerical simulation of the flow at the openings is investigated and found to be crucial to an accurate modeling of the transport.
机译:从多个相同的突出热源向空气的二维自然对流传热进行了数值研究,这些热源模拟了位于两侧均敞开的水平通道中的电子组件。特别令人感兴趣的是在这种通道中对实际边界条件的精确模拟。研究了源温度,通道尺寸,开口,边界条件和源位置对从突出源传热和在突出源上方流动的传热的影响,并研究了不稳定的发生。结果表明,通道尺寸和开口的存在对流体流动具有显着影响。然而,发现它们对热传递的影响相对较小。可以看出,通道高度的增加会导致流量不稳定,从而导致临界Grashof数减少。研究了开口处流动的数值模拟,发现该模拟对运输的精确建模至关重要。

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