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首页> 外文期刊>Journal of thermal analysis and calorimetry >3D modeling of natural convective heat transfer from a varying rectangular heat generating source
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3D modeling of natural convective heat transfer from a varying rectangular heat generating source

机译:不同矩形发热源自然对流传热的3D建模

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摘要

The natural-convection thermal performance of a dielectric liquid in a cubical module triggered by a varying rectangular heat generation source is numerically examined. The rectangular generating source is connected to the center of one vertical wall of the cubical module, which is constructed either vertically or horizontally. Two vertical walls neighboring the source-mounted wall are kept cold, and the remaining walls are insulated from the environment. The isotherms and the velocity contours are computed for a wide range of the Rayleigh number as well as the generating-source aspect ratio and the thermal conductivity ratio, demonstrating the variations of the thermal and stream structures inside the module. It is established that the thermal performance is more significant and is an increasing function of the heat generating-source aspect ratio and the Rayleigh number for the two altered alignments of the generating source. According to the practical demands of the thermal management of electronic devices, the heat transfer rate can be magnified or diminished by choosing the proper parameters such as thermal conductivity ratio, Rayleigh number, the aspect ratio and orientation of the generating source.
机译:通过变化的矩形发热源触发的立方体模块中的介电液体的自然对流的热性能进行了数值检查。矩形发生源被连接到立方体模块,其被构造垂直或水平的一个垂直壁的中心。两个垂直壁相邻的源极 - 安装壁保持冷却,并且剩余的壁由环境绝缘。等温线和速度轮廓计算为广泛使瑞利数的以及生成源纵横比和热导率,这表明在模块内的热和流结构的变化。经确定的热性能是更显著,是发热源的纵横比和用于产生源的两个改变的比对的瑞利数的增函数。根据电子设备的热管理的实际需求,热传递速率可被放大或通过选择适当的参数减少,如热导率比,瑞利数,纵横比和方向发生源的。

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