THE EFFECT OF VIBRATION ON NATURAL CONVECTION HEAT TRANSFER IN AN ENCLOSED SQUARE CAVITY

Baydaa Khalil Khudhair, Adel Mahmood Salh
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Abstract

  A numerical investigation has been implemented to elucidate the effect of vertical and horizontal vibration at normal gravity on natural convection in a square enclosure filled with air at Rayleigh number 7×107 and 4× 108. The enclosure was comprised of two vertical and opposed surfaces (the right hot and the left cold) while the two other surfaces are adiabatic. The two-dimensional, low-Reynolds number k ? ???? turbulence model is applied to enable it to cope with low Reynolds number flows. By transforming the equation of (continuity, Navier-Stokes and energy) using finite volume method from differential forms to algebraic forms using SIMPLE algorithm with hybrid scheme dealing with the time term are adopted to solve the governing equations. A computer program in Fortran 90 was built to carry on the numerical solution. Three cases were studied in this work, case I(reaches to steady state and then begins the effect of vibration at each frequency), caseII and caseIII(begin the effect of vibration from the transient at ascending and descending frequencies respectively).After the validity of the present code by comparing results with these of previous study for similar conditions, solutions have been obtained for Prandtle number of 0.7, aspect ratio (A=1). In the high Rayleih number case (Ra=4×108), the gravitional thermal convection dominates, and the vibration motion does not enhances the heat transfer remarkably. In contrast, in low Rayleigh (Ra=7×107), the vibration thermal convection is dominant, and the vibration enhaces the heat transfer rate significantly. The effect of vertical directional vibration is more powerful in caseII(ascending frequency), when the horizontal directional vibration more effective in case III(descending frequency).  
振动对方形密闭腔内自然对流换热的影响
通过数值研究,阐明了在瑞利数为7×107和4×108的正方形空气外壳中,法向重力下的垂直和水平振动对自然对流的影响。外壳由两个垂直且相对的表面(右侧热表面和左侧冷表面)组成,而其他两个表面是绝热的。二维低雷诺数k????湍流模型的应用使其能够处理低雷诺数流动。采用SIMPLE算法将有限体积法的(连续性、Navier-Stokes和能量)方程从微分形式转换为代数形式,并采用处理时间项的混合格式求解控制方程。用Fortran 90编写了一个计算机程序进行数值求解。本工作研究了三种情况,即情况I(达到稳态,然后在每个频率上开始振动的影响)、情况II和情况III(分别在上升和下降频率上从瞬态开始振动的作用),已经获得了普朗特数为0.7、纵横比(A=1)的解。在高Rayleih数情况下(Ra=4×108),重力热对流占主导地位,振动运动并没有显著增强传热。相反,在低瑞利(Ra=7×107)下,振动热对流占主导地位,振动显著提高了传热率。垂直方向振动的效果在情况II(上升频率)中更为强烈,而水平方向振动在情况III(下降频率)中效果更为有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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