Volume 32 Issue 7
Jul.  2017
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Experiment of turbulent flow in rotating smooth channel using two-dimensional hotwire[J]. Journal of Aerospace Power, 2017, 32(7): 1577-1584. doi: 10.13224/j.cnki.jasp.2017.07.006
Citation: Experiment of turbulent flow in rotating smooth channel using two-dimensional hotwire[J]. Journal of Aerospace Power, 2017, 32(7): 1577-1584. doi: 10.13224/j.cnki.jasp.2017.07.006

Experiment of turbulent flow in rotating smooth channel using two-dimensional hotwire

doi: 10.13224/j.cnki.jasp.2017.07.006
  • Received Date: 2016-12-06
  • Publish Date: 2017-07-28
  • The averaged velocities and Reynolds stresses were measured at different streamwise positions of a rotating smooth channel with two-dimensional hotwire. The results revealed that: the relatively high local rotation parameter expanded the influence region of rotation on the averaged velocity and induced the relaminarization of the turbulent flow near the leading side. The normalized averaged velocity profiles near the trailing side were strictly arranged in the rotation number order, and presented a logarithmic distribution in the log-law region. Meanwhile, all normalized Reynolds stress components were immune to rotation near the trailing side. Owing to the relaminarization, the normalized averaged velocity profiles near the leading side cannot maintain the logarithmic distribution in the log-law region, and all Reynolds stress components decayed with the growing rotation number and radius of the streamwise position. With the u-v quadrant analysis, the immediate reason of the relaminarization was attributed to the reduction of the generation of turbulent fluctuation.

     

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  • [1]
    YANG W J,ZHANG N,CHIOU J.Local heat transfer in a rotating serpentine flow passage[J].Journal of Heat Transfer,1992,114(2):354-361.
    [2]
    HAN J C,ZHANG Y M,KALKUEHLER K.Uneven wall temperature effect on local heat transfer in a rotating two pass square channel with smooth wall[J].Journal of Heat Transfer,1993,115(4):912-920.
    [3]
    PARSONS J A,HAN J C,ZHANG Y M.Effects of model orientation and wall heating condition on local heat transfer in a rotating two pass square channel with 90° rib turbulators[J].International Journal of Heat and Mass Transfer,1995,38(7):1151-1159.
    [4]
    DENG H W,QIU L,TAO Z,et al.Heat transfer study in rotating smooth square U-duct at high rotation numbers[J].International Journal of Heat and Mass Transfer,2013,66(11):733-744.
    [5]
    KOYAMA H,MASUDA S,ARIGA I,et al.Stability and destabilizing effects of coriolis force on two-dimensional laminar and turbulent boundary layers[J].Journal of Engineering for Power,1979,101(1):23-29.
    [6]
    JOHNSTON J P,HALLEEN R M,LEZIUS D K.Effect of spanwise rotation on the structure of two-dimensional fully developed turbulent channel flow[J].Journal of Fluid Mechanics,1972,56(3):535-557.
    [7]
    DI SANTE A,THEUNISSEN R,VAN DEN BRAEMBUSSCHE R A.A new facility for time-resolved PIV measurements in rotating channels[J].Experiments in Fluids,2008,44(2):179-188.
    [8]
    LIOU T M,CHEN C C.LDV study of developing flows through a smooth duct with 180-deg straight-corner turn[J].Journal of Turbomachinery,1999,121(1):167-174.
    [9]
    NAKABAYASHI K,KITOH O.Low Reynolds number fully developed two-dimensional turbulent channel flow with system rotation[J].Journal of Fluid Mechanics,1996,315(1):1-29.
    [10]
    NICKELS T B,JOUBERT P N.The mean velocity profile of turbulent boundary layers with system rotation[J].Journal of Fluid Mechanics,2000,408(1):323-345.
    [11]
    WATMUFF J H,WITT T,JOUBERT P N.Developing turbulent boundary layers with system rotation[J].Journal of Fluid Mechanics,1985,157(1):405-448.
    [12]
    MACFARLANE I,JOUBERT P N.Effects of secondary flows on developing,turbulent,rotating boundary layers[J].Experimental Thermal and Fluid Science,1998,17(1/2):79-89.
    [13]
    MACFARLANE I,JOUBERT P N,NICKELS T B.Secondary flows and developing,turbulent boundary layers in a rotating duct[J].Journal of Fluid Mechanics,1998,373(1):1-32.
    [14]
    NAKABAYASHI K,KITOH O.Turbulence characteristics of two-dimensional channel flow with system rotation[J].Journal of Fluid Mechanics,2005,528(1):355-377.
    [15]
    LUEPTOW R M,BREUER K S,HARITONIDIS J H.Computer-aided calibration of X-probes using a look-up table[J].Experiments in Fluids,2004,6(2):115-118.
    [16]
    WEI K,TAO Z,DENG H W,et al.Interation of secondary flow with developing,turbulent boundary layers in a rotating duct[R].ASME Paper GT2015-42828,2015.
    [17]
    KIM J,MOIN P,MOSER R.Turbulence statistics in fully developed channel flow at low Reynolds number[J].Journal of Fluid Mechanics,1987,177(1):133-166.
    [18]
    POPE S B.Turbulent flows[M].Cambridge,UK:Cambridge University Press,2000:298-333.
    [19]
    陈懋章.粘性流体动力学基础[M].北京:高等教育出版社,2002:282-286.
    [20]
    BRADSHAW P.Turbulence[M].Berlin:Springer Verlag,1978:109-172.
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