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首页> 外文期刊>International Journal of Thermal Sciences >Natural convection in cavities with constant flux heating at the bottom wall and isothermal cooling from the sidewalls
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Natural convection in cavities with constant flux heating at the bottom wall and isothermal cooling from the sidewalls

机译:腔中的自然对流,底壁处的通量加热恒定,侧壁处的等温冷却

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Natural convection in rectangular cavities is studied numerically using a finite volume based computational procedure. In many applications, especially for cooling of electronic components, a natural convection configuration is encountered where a constant flux heating element at the bottom surface are cooled from the isothermal sidewalls while the top wall can be considered adiabatic. The present study is based on such a configuration where a constant flux heat source is symmetrically embedded at the bottom wall. The length of the heat source is varied from 20 to 80% of the total length of the bottom wall. The non-heated parts of the bottom wall are considered adiabatic. The Grashof number is varied from 10{sup}3 to 10{sup}6. The study includes computations for cavities at various aspect ratios, ranging from 0.5 to 2, and inclination angles of the cavity from 0° to 30°. The effects aspect ratio, inclination angles, and heat source length on the convection and heat transfer process in the cavity are analysed. Results are presented in the form of streamline and isotherm plots as well as the variation of the Nusselt number and maximum temperature at the heat source surface under different conditions.
机译:使用基于有限体积的计算程序,对矩形空腔中的自然对流进行了数值研究。在许多应用中,特别是对于电子部件的冷却,会遇到自然对流配置,其中底面的恒定通量加热元件从等温侧壁冷却,而顶壁可以认为是绝热的。本研究基于这样的构造,其中恒定通量热源对称地嵌入在底壁处。热源的长度在底壁总长度的20%到80%之间变化。底壁的未加热部分被认为是绝热的。 Grashof数从10 {sup} 3到10 {sup} 6不等。该研究包括计算各种纵横比(范围从0.5到2)的空腔,以及空腔的倾斜角度从0°到30°。分析了长宽比,倾斜角度和热源长度对腔内对流和传热过程的影响。结果以流线图和等温线图以及在不同条件下热源表面的努塞尔数和最高温度的变化形式表示。

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