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Momentum and heat transfer from a square cylinder in power-law fluids

机译:幂律流体中方筒的动量和热传递

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Numerical solutions are sought, using FLUENT, to the mass, momentum and thermal energy equations for the 2-D flow of power-law fluids over a cylinder of square cross-section. The major thrust of this work is to delineate the values of the Reynolds number denoting the onset of flow separation and the limits of the steady flow regime for both shear-thinning and shear-thickening type fluids. Extensive results are reported on streamline and vorticity contours over wide ranges of power-law index (0.2-1.4) corroborating the occurrence of these two transitions. Having established the limits of the steady flow regime, drag and Nusselt number results are obtained in this regime as functions of the Reynolds number (0.1-40), of Prandtl number (0.7-100) for highly shear-thinning fluids (power-law index < 0.5) thereby extending the range of currently available results to that encountered in practical applications. The Nusselt number shows positive dependence on both the Reynolds and Prandtl numbers. Also, shear-thinning characteristics can augment the rate of heat transfer by up to 100% under appropriate conditions.
机译:使用FLUENT,寻求关于幂律流体在正方形横截面的圆柱上的二维流动的质量,动量和热能方程的数值解。这项工作的主要目的是描绘表示剪切稀化和剪切稠化类型的流体的雷诺数的值,该值表示流动分离的开始和稳态流态的极限。据报道,在幂律指数(0.2-1.4)的较宽范围内,流线和涡度等值线均得到了广泛的结果,证实了这两个过渡的发生。确定了稳定流态的极限后,在该态下获得的阻力和努塞尔特数结果是高剪切稀化流体的雷诺数(0.1-40),普朗特数(0.7-100)的函数(幂律)指数<0.5),从而将当前可用结果的范围扩展到实际应用中遇到的结果。努塞尔数显示出对雷诺数和普朗特数的正相关性。同样,在合适的条件下,剪切稀化特性可以将热传递速率提高多达100%。

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