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Waviness Effect Of A Wavy Circular Cylinder On The Heat Transfer At A Reynolds Number Of 300

机译:雷诺数为300时波浪形圆柱体的波纹度对传热的影响

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The present study investigates three-dimensional characteristics of fluid flow and heat transfer around a wavy cylinder which has the sinusoidal variation in the cross sectional area along the spanwise direction. The three different wavelengths of π/4, π/3 and π/2 at the fixed wavy amplitude of 0.1 have been considered to investigate the effect of waviness on especially the forced convection heat transfer around a wavy cylinder when the Reynolds and Prandtl numbers are 300 and 0.71, respectively. The numerical solution for unsteady forced convective heat transfer is obtained using the finite volume method. The immersed boundary method is used to handle the wavy cylinder in a rectangular grid system. The present computational results for a wavy cylinder are compared with those for a smooth cylinder. The fluid flow and heat transfer around the wavy cylinder depends on both the location along the spanwise direction and the wavelength. The time- and total surface-averaged Nusselt number for a wavy cylinder with λ =π/ 2 is larger than that for a smooth cylinder, whereas that with λ - π/4 and 7π/3 is smaller than that for a smooth cylinder. However, because the surface area exposed to heat transfer for a wavy cylinder is larger than that for a smooth cylinder, the total heat transfer rate for a wavy cylinder with different wavelengths of λ = π/4,π/3 and π/2 is larger than that for a smooth cylinder.
机译:本研究研究了波浪形圆柱体周围流体流动和传热的三维特征,该波浪形圆柱体在沿翼展方向的横截面中具有正弦变化。在雷诺数和普朗特数为0的情况下,已经考虑了三个固定波长π/ 4,π/ 3和π/ 2的三个不同波长,以研究波纹对波浪圆柱周围强制对流传热的影响。 300和0.71。使用有限体积法获得了非稳态强迫对流换热的数值解。浸入边界法用于处理矩形网格系统中的波浪圆柱体。将波浪圆柱体的当前计算结果与光滑圆柱体的计算结果进行比较。波浪形圆柱体周围的流体流动和传热取决于沿展向方向的位置和波长。 λ=π/ 2的波浪圆柱体的时间和表面平均Nusselt数大于光滑圆柱体的时间,而λ-π/ 4和7π/ 3的波浪面的平均时间均小于光滑圆柱体。但是,由于波浪形圆柱体的传热表面积大于光滑圆柱体的传热表面积,因此波长分别为λ=π/ 4,π/ 3和π/ 2的波浪形圆柱体的总传热速率为比光滑圆柱体大。

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