首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Momentum and heat transfer from a semi-circular cylinder to power-law fluids in the vortex shedding regime
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Momentum and heat transfer from a semi-circular cylinder to power-law fluids in the vortex shedding regime

机译:在涡旋脱落状态下从半圆柱体到幂律流体的动量和热传递

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摘要

Flow and heat transfer from a semi-circular cylinder to power-law fluids has been studied in the laminar vortex shedding regime for the range of conditions as follows: Reynolds number, 40 ≤ Re ≤ 140; Prandtl number, 0.7 ≤ Pr ≤ 50; and power-law index, 0.2 ≤ n ≤ 1.8. Extensive results are presented in terms of the streamline, vorticity and isotherm profiles, drag and lift coefficients, Strouhal number, and Nusselt number. The influence of Reynolds number, Prandtl number, and power-law index are seen to be more prominent in shear-thinning fluids (n < 1) than that in shear-thickening (n > 1) fluids. The shear-thinning fluid behavior enhances the rate of heat transfer, whereas shear-thickening fluid behavior impedes it.
机译:已经在层流涡旋脱落条件下研究了从半圆柱体到幂律流体的流动和传热,其条件范围如下:雷诺数,40≤Re≤140;普朗特数,0.7≤Pr≤50;幂律指数为0.2≤n≤1.8。在流线,涡度和等温线剖面,阻力和升力系数,斯特劳哈尔数和努塞尔特数方面都给出了广泛的结果。雷诺数,普朗特数和幂律指数的影响在剪切稀化流体(n <1)中比在剪切稠化流体(n> 1)中更为显着。剪切变稀的流体行为会提高传热速率,而剪切变稀的流体行为会阻碍传热。

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