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首页> 外文期刊>Journal of Mechanical Science and Technology >Numerical study of fluid flow and convective heat transfer characteristics in a sinusoidal wavy circular tube
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Numerical study of fluid flow and convective heat transfer characteristics in a sinusoidal wavy circular tube

机译:正弦波状圆管内流体流动和对流传热特性的数值研究

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摘要

This study presents an investigation of the flow and heat transfer characteristics in a Sinusoidal wavy circular tube (SWCT). We solved numerically the conservation equations of continuity, momentum and energy which govern the steady, three-dimensional, and incompressible fluid flow and the heat transfer in the SWCT. The friction factor, heat transfer rate, and goodness factors of the SWCT were taken into consideration as performance metrics. The present paper also discusses the effect of the geometry parameters, such as the peak amplitude and wavelength, on the distribution of the local pressure coefficient, fluid flow, wall vorticity and local Nusselt number in the sinusoidal wavy circular tube. The simulations were performed for the different Reynolds numbers of 100, 1000 and 10000. The calculated results were evaluated in terms of the friction factor and Colburn j factor, and their overall performance was estimated using the area and volume goodness factors.
机译:这项研究提出了正弦波波浪圆管(SWCT)中的流动和传热特性的研究。我们用数值方法求解了连续性,动量和能量守恒方程,它们控制了SWCT中稳定的,三维的和不可压缩的流体流动以及热传递。 SWCT的摩擦因数,传热率和良性因数被视为性能指标。本文还讨论了诸如振幅和波长之类的几何参数对正弦波状圆形管中局部压力系数,流体流动,壁涡度和局部Nusselt数分布的影响。对不同的雷诺数100、1000和10000进行了仿真。根据摩擦系数和Colburn j系数对计算结果进行了评估,并使用面积和体积良性系数估算了它们的整体性能。

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