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3-D numerical study of the effect of fin discontinuity on heat transfer augmentation in pipes having internal longitudinal fins for turbulent compressible flow

机译:翅片不连续性对湍流可压缩流内部纵向翅片管中传热增加影响的3-D数值研究

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摘要

Pipes with internal longitudinal fins are ideal to be utilized in flow-based waste heat recovery applications. They provide significantly higher heat transfer coefficient than plain pipes, and lower pressure drop than helically finned pipes. This paper investigates the effect of fin discontinuity on the convective heat transfer coefficient. A 3-D finite volume numerical solution of Reynolds- Averaged Navier-Stokes equations for steady, compressible and turbulent flow is presented. Stanton number, Nusselt number and the convective heat transfer coefficient are computed for five different geometries at constant heat transfer coefficient on the outer wall. The effects of both continuous and discontinuous fins on heat transfer are elucidated. A new correlation to predict the temperature drop per unit length as a function of discontinuity offset distance is obtained.
机译:具有内部纵向翅片的管道非常适合用于基于流量的废热回收应用。它们提供的传热系数比普通管高得多,而压降比螺旋翅片管低。本文研究了翅片不连续性对对流传热系数的影响。给出了稳态,可压缩和湍流的雷诺平均Navier-Stokes方程的3-D有限体积数值解。在外壁上以恒定传热系数计算五个不同几何形状的Stanton数,Nusselt数和对流传热系数。阐明了连续散热片和不连续散热片对传热的影响。获得了一种新的相关性,可以预测每单位长度的温度下降与不连续偏移距离的关系。

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