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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >An empirical solution to turbulent natural convection and radiation heat transfer in square and rectangular enclosures
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An empirical solution to turbulent natural convection and radiation heat transfer in square and rectangular enclosures

机译:方形和矩形外壳中湍流自然对流和辐射热传递的经验解决方案

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摘要

The effects of natural turbulent convection with the interaction of surface radiation in a rectangular enclosure have previously been numerically and theoretically studied. The analyses were carried out over a wide range of enclosure aspect ratios ranging from 0.0625 to 16, different enclosure sizes, with cold wall temperatures ranging from 283 to 373 K, and temperature ratios ranging from 1.02 to 2.61. The work was carried out using four fluids (Argon, Air, Helium and Hydrogen; whose properties vary with temperature). These can be used to calculate Nusselt number for pure natural convection and also to calculate the ratio between convection to radiation heat transfer for both square and rectangular enclosures. This work extends these results by providing an empirical solution for the case of radiation and natural convection in square and rectangular enclosures and also provides a correlation equation to calculate the total Nusselt number for these cases. This method allows the simple calculation of either the total heat transfer rate, given the fluid, the geometry and the temperatures of the hot and cold walls, or via a straightforward iterative technique, the temperature of one wall given the other wall temperature and the total heat transfer.
机译:天然湍流对流与矩形外壳中表面辐射的相互作用的影响先前已经进行了数值和理论研究。这些分析是在0.0625到16的各种外壳长宽比范围内进行的,不同的外壳尺寸,冷壁温度从283到373 K,温度比从1.02到2.61。该工作是使用四种流体(氩气,空气,氦气和氢气;其性质随温度而变化)进行的。这些可以用于计算纯自然对流的Nusselt数,还可以计算正方形和矩形外壳的对流与辐射热传递之间的比率。通过为方形和矩形外壳中的辐射和自然对流情况提供经验解,这项工作扩展了这些结果,并且还提供了一个相关方程来计算这些情况下的总Nusselt数。这种方法可以简单地计算总传热速率(给定热壁和冷壁的流体,几何形状和温度),或者通过直接的迭代技术,计算一个壁的温度(给定另一壁温度和总壁厚)传播热量。

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