首页> 外文会议>ASME power conference >NUMERICAL INVESTIGATION OF A THREE-DIMENSIONAL LAMINAR MIXED CONVECTION FLOWS IN LID-DRIVEN CAⅥTY FOR VERY SMALL RICHARDSON NUMBERS
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NUMERICAL INVESTIGATION OF A THREE-DIMENSIONAL LAMINAR MIXED CONVECTION FLOWS IN LID-DRIVEN CAⅥTY FOR VERY SMALL RICHARDSON NUMBERS

机译:极小RICHARDSON数的平面驱动腔中三维层流混合对流的数值研究

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Laminar mixed convection in a three-dimensional lid driven cavity is numerically investigated. The top lid of the cavity is moving rightwards with a constant speed at a cold temperature. The bottom wall is maintained at an isothermal hot temperature, while the other vertical walls of the cavity are assumed to be insulated. In this study the mass diffusion was not taken into account and the fluid used was air. The flow and heat transfer behavior is studied for various Richardson number ranging from 5 × 10~(-5) to 3 × 10~(-4) at a fixed Prandtl number of 0.71 through analyzing the local Nusselt number distribution at different sections inside the cavity. Lewis number Le is assumed to be unity and the buoyancy ratio parameter N is equal to zero. Computations were done using an in-house code based on a finite volume method. The results showed a good agreement with previous two dimensional studies, while the three dimensional study gives different results at different sections inside the cavity. It is observed that, the average Nusselt number "Av Nu" on top and bottom surfaces decreases for all sections inside the cavity with increasing Richardson number. A correlation was formulated for each section on both walls for "Av Nu" as a function of "Ri" with a maximum error of 7.3%.
机译:对三维盖驱动腔内的层流混合对流进行了数值研究。空腔的顶盖在低温下以恒定的速度向右移动。底壁保持在等温高温下,而空腔的其他垂直壁则假定是隔热的。在这项研究中,没有考虑质量扩散,并且使用的流体是空气。通过分析分布在不同区域内的局部Nusselt数分布,研究了在5×10〜(-5)至3×10〜(-4)范围内固定的普朗特数为0.71时的流动和传热行为。腔。假设刘易斯数Le为1,并且浮力比参数N等于零。使用基于有限体积方法的内部代码进行计算。结果显示与先前的二维研究非常吻合,而三维研究在型腔内部的不同部分给出了不同的结果。观察到,腔内所有部分的顶面和底面的平均努塞尔数“ Av Nu”随着理查森数的增加而减小。在两个壁上的每个截面上针对“ Av Nu”制定了相关性,作为“ Ri”的函数,最大误差为7.3%。

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