Turbulent flow separation and characteristics of heat transfer under unsteady hydrodynamic conditions

被引:0
作者
Davletshin I.A.
Dushina O.A.
Zan'ko F.S.
Mikheev N.I.
Molochnikov V.M.
机构
关键词
Heat Transfer; Separation Flow; Heat Transfer Enhancement; Separation Bubble; Separation Region;
D O I
10.1134/S0040601511130040
中图分类号
学科分类号
摘要
Results from an experimental study of hydrodynamics and heat transfer in turbulent separation flow under the conditions of its periodic pulsations are presented. It is found that an essential change occurs in the spatial and timing structure of separation flow under the effect of superimposed unsteadiness. Phenom- ena involving reduction of the longitudinal dimensions of the separation region and essential enhancement of heat transfer in the separation region of pulsating flow are revealed. The physical mechanism of these phe- nomena is described. © Pleiades Publishing, Inc., 2011.
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页码:1069 / 1078
页数:9
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共 17 条
  • [1] Sung H.J., Rhim J.W., Kiya M., Discrete-vortex simulation of pulsating flow on a turbulent leading-edge separation bubble, Proceedings of the 5th Symposium on Numerical Physical Aspects of Aerody-namic Flows, California State University, (1992)
  • [2] Lee T.S., Shi Z.D., Numerical study of effects of pulsatile amplitude for transitional turbulent pulsatile flow in pipes with ring-type constrictions, International Journal for Numerical Methods in Fluids, 30, 7, pp. 813-830, (1999)
  • [3] Pozarlik A.K., Panara D., Kok J.B.W., Van Der Meer T.H., Heat transfer in a recirculation zone at steady-state and oscillating conditions-The back facing step test case, Proceedings of the 5th Euro-pean Thermal-Sciences Conference, (2008)
  • [4] Le H., Moin P., Kim J., Direct numerical simu-lation of turbulent flow over a backward-facing step, J. Fluid Mech., 330, pp. 349-374, (1997)
  • [5] Rockwell D., Oscillations of shear layers interacting with obstacles, Aerokosm. Tekhn., 2, 2, pp. 12-38, (1984)
  • [6] Rockwell D., Naudasher E., A review self oscil-lations in currents flowing over cavities, Teoret. Osn. Inzh. Rasch., 100, 2, pp. 119-135, (1978)
  • [7] Zan'ko F.S., Mikheev N.I., Unsteady processes in turbulent flow downstream of a back facing step. statistical characteristics, Izv. Ross. Akad. Nauk, Energetika, 2, pp. 44-51, (2006)
  • [8] Davletshin I.A., Mikheev N.I., Molochnikov V.M., Romanov D.I., Pressure drop in a round tube during a pulsation change in flowrate, Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza, 3, pp. 96-101, (2006)
  • [9] Kozlov A.P., Mikheev N.I., Molochnikov V.M., Saikin A.K., Thermoanemometric Measurements of Surface Friction in Separation Flows, (1998)
  • [10] Eaton D.K., Johnston J.P., An overview of stud-ies of subsonic turbulent attaching flows, Raketn. Tekhn. Kosmonavt., 19, 10, pp. 7-19, (1981)