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首页> 外文期刊>International Journal of Heat and Mass Transfer >Natural convection in triangular enclosures with protruding isothermal heater
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Natural convection in triangular enclosures with protruding isothermal heater

机译:带有恒温加热器的三角形外壳中的自然对流

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Natural convection heat transfer from a protruding heater located in a triangular enclosure has been analyzed numerically. Temperature of inclined boundary of the triangle is lower than the temperature of the heater, which has constant temperature boundary condition. The remaining walls are insulated. The study is formulated in terms of the vorticity-stream function procedure and numerical solution was performed using the finite difference method. Air was chosen as working fluid with Pr = 0.71. Governing parameters, which are effective on flow field and temperature distribution, are; Rayleigh number, aspect ratio of triangle enclosure, dimensionless height of heater, dimensionless location of heater and dimensionless width of heater. Streamlines, isotherms, velocity profiles, local and mean Nus-selt numbers are presented. It is found that all parameters related with geometrical dimensions of the heater are effective on temperature distribution, flow field and heat transfer.
机译:已对位于三角形外壳中的突出加热器的自然对流传热进行了数值分析。三角形的倾斜边界的温度低于加热器的温度,加热器具有恒定的温度边界条件。其余的墙壁是绝缘的。根据涡流函数程序进行了研究,并使用有限差分法进行了数值求解。选择空气作为Pr = 0.71的工作流体。对流场和温度分布有效的控制参数是;瑞利数,三角形外壳的长宽比,加热器的无量纲高度,加热器的无量纲位置和加热器的无量纲宽度。给出了流线,等温线,速度曲线,局部和平均Nus-selt数。发现与加热器的几何尺寸有关的所有参数对温度分布,流场和传热均有效。

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