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NATURAL CONVECTION FROM PROTRUDING HEAT SOURCES IN A CHANNEL

机译:自然对流从沟道中突出的热源

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Natural convection has important implications in many applications like cooling of electronic equipment due to its low cost and easy maintenance. In the present study, two-dimensional natural convection heat transfer to air from multiple identical protruding heat sources, which simulate electronic components, located in a horizontal channel has been studied numerically. The fluid flow and temperature profiles, above the heating elements placed between an adiabatic lower plate and an isothermal upper plate, are obtained using numerical simulation. 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. Different configurations of channel dimensions and separation distances of heat sources are considered and heir effects on natural convection heat transfer characteristics are studied. The results show that the channel dimensions have a significant effect on fluid flow. However, their effects on heat transfer are found to be small. The separation distance is found to be an important parameter affecting the heat transfer rate. The numerical results of temperature profiles are compared with the experimental measurements performed using Filtered Rayleigh Scattering (FRS) technique in an earlier study, indicating good agreement. It is observed that adiabatic upper plate assumption leads to better temperature predictions than isothermal plate assumption.
机译:由于其低成本和易于维护,自然对流在许多应用中具有重要的应用。在本研究中,在数值上研究了从多个相同的突出热源到空气的二维自然对流热传递,该热源模拟位于水平通道中的电子元件。使用数值模拟获得放置在绝热下板和等温上板之间的加热元件上方的流体流动和温度曲线。研究了源极温度,通道尺寸,开口,边界条件和源位置对突出源的热传递和流动的源位置。考虑了不同的通道尺寸和分离距离的不同配置,并研究了对自然对流传热特性的继承效应。结果表明,通道尺寸对流体流具有显着影响。然而,它们发现它们对热传递的影响很小。发现分离距离是影响传热速率的重要参数。将温度分布的数值结果与在早期研究中使用过滤的瑞利散射(FRS)技术进行的实验测量进行了比较,表明良好的一致性。观察到,绝热上板假设导致比等温板假设更好的温度预测。

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