HYDROTHERMAL BEHAVIOR OF FLUID FLOW AND HEAT TRANSFER THROUGH A BENDING SQUARE CHANNEL

Selim Hussen
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Abstract

The numerous applications in medical fields as well as in industrial areas have drawn substantial attention of the researchers to study the fluid flow and heat transfer (HT) through a bent duct. The present paper demonstrates a spectral-based numerical study of 2D flow in a bent square geometry for various curvature ratios. The numerical calculation has been conducted over Dn, and the curvature ranges from 0.001 to 0.5. The horizontal walls are thermally different where the bottom wall is heated while the ceiling wall cooled, the vertical walls being thermally insulated. After an extensive investigation, we found two branching structures of the solution, each consisting of two branches with 2- to 8-vortex solutions for small and medium curvatures while three branches of solution structure for large curvature. The instability of the flow is then calculated by performing time-evolution (TEv) analysis and by sketching the phase-space (PS) of the solutions. This study also demonstrates that the HT is significantly boosted with the effect of secondary flows (SF) and the increasing secondary vortices boost heat transfer more effectively than other physically realizable solutions.
弯曲方形通道中流体流动和传热的热液行为
弯曲管道在医学和工业领域的广泛应用引起了研究人员的极大关注,研究流体在弯曲管道中的流动和传热。本文展示了一种基于频谱的二维流动的数值研究在弯曲的正方形几何不同曲率比。在Dn上进行了数值计算,曲率范围为0.001 ~ 0.5。水平墙在温度上是不同的,底层墙被加热,而天花板墙被冷却,垂直墙是隔热的。经过广泛的研究,我们发现了解的两个分支结构,每个分支由两个分支组成,每个分支具有2到8个涡旋解,对于中小曲率,每个分支由两个分支组成,而对于大曲率,每个分支由三个分支组成。然后通过进行时间演化(TEv)分析和绘制解的相空间(PS)来计算流动的不稳定性。该研究还表明,二次流(SF)的作用显著提高了高温,增加的二次涡比其他物理实现的解决方案更有效地促进了换热。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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