Buoyancy Effect on Developing Turbulent Flow and Heat Transfer in a Helical Pipe With Finite Pitch

B. Zheng, C. Lin, M. Ebadian
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Abstract

Numerical modeling was performed to investigate the buoyancy effect on developing turbulent flow and the heat transfer characteristics of saturated water in a helical pipe with finite pitch. The renormalization group (RNG) κ–ε model was used to account for the turbulent flow and heat transfer in the helical pipe at a constant wall temperature with or without buoyancy force effect. A control volume method with second-order accuracy was used to numerically solve the three-dimensional full elliptic governing equations for this problem. The O-type nonuniform structured grid system was adopted to discretize the computation domain. The Boussinesq approximation was applied to deal with the buoyancy. This study explored the influence of buoyancy on the developing heat transfer along the helical pipe. Based on the results of this research, the velocity, temperature, and Nusselt number are presented graphically and analyzed.
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有限螺距螺旋管内浮力对湍流发展和换热的影响
采用数值模拟的方法研究了浮力对有限螺距螺旋管内饱和水发生湍流的影响和换热特性。采用重整化群(RNG) κ -ε模型,研究了在有或无浮力作用下,恒壁温条件下螺旋管内的湍流流动和换热过程。采用二阶精度的控制体积法对该问题的三维全椭圆控制方程进行了数值求解。采用o型非均匀结构网格系统对计算域进行离散化。采用Boussinesq近似来处理浮力。本研究探讨了浮力对螺旋管传热过程的影响。在此基础上,对速度、温度和努塞尔数进行了图解和分析。
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