期刊文献+

Heat transfer in turbulent tube flow inserted with loose-fit multi-channel twisted tapes as swirl generators

Heat transfer in turbulent tube flow inserted with loose-fit multi-channel twisted tapes as swirl generators
下载PDF
导出
摘要 Heat transfer and flow behaviors in three-dimensional circular tubes with loose-fit multiple channel twisted tapes were numerically studied. The investigation was examined for Reynolds numbers (Re) ranging from 5000 to 15,000, by using air as testing fluid. Effects of the multiple channel number (N = 2, 3, and 4), clearance ratio (CR = 0.0, 0.025, 0.05, and 0.075) on heat transfer enhancement and flow friction were examined. The numerical results indicate that the tubes with loose-fit multiple channel twisted tapes perform higher heat transfer rates than the plain tube. The enhanced heat transfer rate is escorted with larger pressure drop. Both heat transfer and pressure drop increase with increasing multiple channel number (N) and decreasing clearance ratio (CR). Heat transfer augmented by the loose-fit multiple channel twisted tape with N = 4 is higher than those enhanced by the ones with N = 2 and 3 by around 9.5-17.8% and 5.8-7.8%, respectively. In addition, the loose-fit multiple channel twisted tapes with clearance ratio of 0.025, 0.05, and 0.075 give lower heat transfer rates than the one with CR = 0.0 by around 8.4%, 17.5%, and 28.8%, respectively. Heat transfer and flow behaviors in three-dimensional circular tubes with loose-fit multiple channel twisted tapes were numerically studied. The investigation was examined for Reynolds numbers (Re) ranging from 5000 to 15,000, by using air as testing fluid. Effects of the multiple channel number (N = 2, 3, and 4), clearance ratio (CR = 0.0, 0.025, 0.05, and 0.075) on heat transfer enhancement and flow friction were examined. The numerical results indicate that the tubes with loose-fit multiple channel twisted tapes perform higher heat transfer rates than the plain tube. The enhanced heat transfer rate is escorted with larger pressure drop. Both heat transfer and pressure drop increase with increasing multiple channel number (N) and decreasing clearance ratio (CR). Heat transfer augmented by the loose-fit multiple channel twisted tape with N = 4 is higher than those enhanced by the ones with N = 2 and 3 by around 9.5-17.8% and 5.8-7.8%, respectively. In addition, the loose-fit multiple channel twisted tapes with clearance ratio of 0.025, 0.05, and 0.075 give lower heat transfer rates than the one with CR = 0.0 by around 8.4%, 17.5%, and 28.8%, respectively.
出处 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2017年第6期372-378,共7页 力学快报(英文版)
关键词 Heat transfer Heat transfer enhancement Loose-fit multiple channel twisted tape Swirling flow Heat transfer Heat transfer enhancement Loose-fit multiple channel twisted tape Swirling flow
  • 相关文献

参考文献2

二级参考文献44

  • 1S. Baskaya, M. Sivrioglu, M. Ozek. Parametric study of natural convection heat transfer from horizontal rectangular fin arrays. International Journal of Thermal Sciences 39, 797-805 (2000).
  • 2A. Bhattacharya, R. Mahajan. Metal foam and finned metal foam heat sinks for electronics cooling in buoyancy- induced convection. Journal of Electronic Packaging 128, 259-266 (2006).
  • 3H. Y. Kim, Y. G. Kim, B. H. Kang. Enhancement of natural convection and pool boiling heat transfer via ultrasonic vibration. International Journal of Heat and Mass Transfer 47, 2831-2840 (2004).
  • 4H. E Oztop, E. Abu-Nada. Numerical study of natural convection in partially heated rectangular enclosures filled with nanofluids. International Journal of Heat and Fluid Flow 29, 1326-1336 (2008).
  • 5L. S. Yao. Natural convection along a vertical complex wavy surface. International Journal of Heat and Mass Transfer 49, 281-286 (2006).
  • 6A. Beljaars. The parametrization of surface fluxes in large-scale models under free convection. Quarterly Journal of the Royal Meteorological Society 121, 255-270 (1995).
  • 7M. M. Molla, M. A. Hossain, L. S. Yao. Natural convection flow along a vertical wavy surface with uniform surface temperature in presence of heat generation/absorption. International Journal of Thermal Sciences 43, 157-163 (2004).
  • 8A. Auletta, O. Manca, B. Morrone, et al. Heat transfer enhancement by the chimney effect in a vertical isoflux channel. International Journal of Heat and Mass Transfer 44, 43454357 (2001 ).
  • 9S. Haaland, E. Sparrow. Solutions for the channel plume and the parallel-walled chimney. Numerical Heat Transfer 6, 155-172 (1983). Y. Asako, H. Nakamura, M. Faghri. Natural convection in a vertical heated tube attached to a thermally insulated chimney of a different diameter. Journal of Heat Transfer 112, 790-792 (1990).
  • 10S. Haaland, E. Sparrow. Solutions for the channel plume and the parallel-walled chimney. Numerical Heat Transfer 6, 155-172 (1983).

共引文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部