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Natural convection in cavities with a thin fin on the hot wall

机译:在热壁上有薄鳍片的空腔中自然对流

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A numerical study has been carried out in differentially heated square cavities, which are formed by horizontal adi-abatic walls and vertical isothermal walls. A thin fin is attached on the active wall. Heat transfer by natural convection is studied by numerically solving equations of mass, momentum and energy. Streamlines and isotherms are produced, heat and mass transfer is calculated. A parametric study is carried out using following parameters: Rayleigh number from 10~4 to 10~9, dimensionless thin fin length from 0.10 to 0.90, dimensionless thin fin position from 0 to 0.90, dimen-sionless conductivity ratio of thin fin from 0 (perfectly insulating) to 60. It is found that Nusselt number is an increasing function of Rayleigh number, and a decreasing function of fin length and relative conductivity ratio. There is always an optimum fin position, which is often at the center or near center of the cavity, which makes heat transfer by natural convection minimized. The heat transfer may be suppressed up to 38% by choosing appropriate thermal and geometrical fin parameters.
机译:已经对由水平绝热壁和垂直等温壁形成的差热方形腔进行了数值研究。薄的鳍片附着在活动壁上。通过数值求解质量,动量和能量方程,研究了自然对流引起的热传递。产生流线和等温线,计算传热和传质。使用以下参数进行参数研究:瑞利数为10〜4至10〜9,无量纲的薄鳍长度为0.10至0.90,无量纲的薄鳍位置为0至0.90,无量纲的薄鳍状电导率从0(完全绝缘)到60。发现Nusselt数是瑞利数的递增函数,而鳍长度和相对电导率的递减函数。总有一个最佳的散热片位置,该位置通常位于腔体的中心或中心附近,这使得通过自然对流进行的热传递最小化。通过选择适当的散热片和几何散热片参数,可以将热传递抑制到38%。

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