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首页> 外文期刊>Journal of Thermodynamics >Numerical Analysis of Flow Field and Heat Transfer of 2D Wavy Ducts and Optimization by Entropy Generation Minimization Method
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Numerical Analysis of Flow Field and Heat Transfer of 2D Wavy Ducts and Optimization by Entropy Generation Minimization Method

机译:二维波浪管流场与传热的数值分析及熵最小化优化

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摘要

This article provided a research for the trend of heat transfer and flow field through a 2-dimensional wavy duct. To construct a grid mesh, the physical domain was transferred to the computational domain and finite volume scheme was used for discretizing the governing equations. Through the simulation, the flow regime stayed in laminar mode. Constant temperature boundary condition has been used for solid walls. Air was used as a working fluid. Existence of waves makes some phenomenon like flow separation. Effect of Reynolds number, wave width, and wave number has been analyzed and velocity distribution, heat transfer coefficient, and tangential stress were computed for different cases. The final results were compared with the same straight duct. The entropy generation minimization method has been used for better comparison between final results.
机译:本文研究了通过二维波浪形管道的传热和流场趋势。为了构建网格,将物理域转移到计算域,并使用有限体积方案离散控制方程。通过模拟,流态保持在层流模式。恒温边界条件已用于实心墙。空气用作工作流体。波浪的存在会引起诸如流分离之类的现象。分析了雷诺数,波宽度和波数的影响,并针对不同情况计算了速度分布,传热系数和切向应力。将最终结果与相同的直管进行比较。熵生成最小化方法已用于更好地比较最终结果。

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