Numerical simulation of heat transfer and pressure drop characteristics in twisted oval tubes

Author:

Di Xichao1,Tao Ping1,Zhou Meihui1,Zhou Jianqiu1

Affiliation:

1. School of Energy Science and Engineering, Nanjing Tech University, Nanjing, Jiangsu Province, China

Abstract

The numerical research aims to investigate the heat transfer performance difference between the twisted tube and the smooth tube at the same hydraulic diameter. The effect of the major/minor axis ratios on the fluid-flow inside the twisted oval tube is studied in the Reynolds number range of 3000-11000, and the integral thermal-hydraulic effectiveness of twisted oval tubes is evaluated. The results show that the twisted wall induces secondary flow perpendicular to the mainstream direction. The vortices are rapidly generated in the pipe-line when the fluid enters the twisted tube section from the upstream section. As the fluid develops further, the vortices converge to form a spiral flow. Numerical simulations indicate that the average Nusselt number of twisted oval tube with a major/minor axes ratio of 1.70 increases by 18.7-35.5%, while the pressure drop increases by

Publisher

National Library of Serbia

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