Secondary flow and heat transfer in turbulent flow over streamwise ridges

被引:33
|
作者
Stroh, A. [1 ]
Schaefer, K. [1 ]
Forooghi, P. [1 ]
Frohnapfel, B. [1 ]
机构
[1] Karlsruhe Inst Technol, Inst Fluid Mech, Karlsruhe, Germany
关键词
Secondary flow; Turbulent flow; Heat transfer enhancement; DNS; CHANNEL FLOW; SURFACES; BOUNDARY; MOMENTUM; FRICTION; VELOCITY; CURRENTS; ANALOGY; FIELDS; DNS;
D O I
10.1016/j.ijheatfluidflow.2019.108518
中图分类号
O414.1 [热力学];
学科分类号
摘要
Surface structuring in form of streamwise-aligned triangular ridges is investigated in the framework of a fully developed turbulent channel flow with constant wall temperatures of different values prescribed on the upper and lower walls at Re-b = 18000. Two arrangements of the ridges on both channel walls are considered - a symmetrical arrangement and a staggered arrangement with a spanwise shift of the upper wall structure by a half ridge separation. The ridges generate a strong large-scale secondary motion and hence enhance momentum and heat transfer in the channel by approximately 30% relatively to the smooth channel. In spite of the fact that both arrangements translate into very similar global flow properties, the composition of skin friction coefficient and Stanton number significantly differs. The componental split-up of the friction coefficient reveals that the enhancement of momentum transfer mainly originates from the dispersive component linked to the secondary flows. For the Stanton number, however, the enhancement arises not only from the dispersive component, but also from a strong modification of the turbulent flow properties.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Turbulent flow and heat transfer in eccentric annulus
    Nikitin, Nikolay
    Wang, Hengliang
    Chernyshenko, Sergei
    [J]. JOURNAL OF FLUID MECHANICS, 2009, 638 : 95 - 116
  • [42] Annular heat transfer coefficients for turbulent flow
    McMillen, EL
    Larson, RE
    [J]. TRANSACTIONS OF THE AMERICAN INSTITUTE OF CHEMICAL ENGINEERS, 1944, 40 (02): : 0177 - 0202
  • [43] HEAT TRANSFER IN VISCOELASTIC LIQUIDS IN TURBULENT FLOW
    ASTARITA, G
    MARRUCCI, G
    [J]. INDUSTRIE CHIMIQUE BELGE-BELGISCHE CHEMISCHE INDUSTRIE, 1966, 31 (SEP): : P72 - &
  • [44] Enhancement of heat transfer for turbulent flow in channels
    Olimpiev V.V.
    Mirzoev B.G.
    [J]. Russian Aeronautics (Iz VUZ), 2014, 57 (1) : 84 - 91
  • [45] Turbulent heat transfer in plane Couette flow
    Le, PM
    Papavassiliou, DV
    [J]. JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2006, 128 (01): : 53 - 62
  • [46] HEAT AND MASS TRANSFER FOR TURBULENT PIPE FLOW
    HUGHMARK, GA
    [J]. AICHE JOURNAL, 1971, 17 (04) : 902 - &
  • [47] Heat transfer and turbulent characteristics in a pulsating flow
    Mikheev, N., I
    Dushin, N. S.
    Gazizov, I. M.
    [J]. 3RD ALL-RUSSIAN SCIENTIFIC CONFERENCE THERMOPHYSICS AND PHYSICAL HYDRODYNAMICS WITH THE SCHOOL FOR YOUNG SCIENTISTS, 2018, 1128
  • [48] Heat transfer during turbulent flow in pipes
    Hofmann, E
    [J]. ZEITSCHRIFT DES VEREINES DEUTSCHER INGENIEURE, 1938, 82 : 741 - 742
  • [49] THEORY OF HEAT AND MASS TRANSFER IN TURBULENT FLOW
    DILMAN, VV
    [J]. INTERNATIONAL CHEMICAL ENGINEERING, 1968, 8 (01): : 156 - &
  • [50] FLOW OF AND HEAT-TRANSFER IN TURBULENT SLURRIES
    KAWASE, Y
    MOOYOUNG, M
    [J]. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 1992, 19 (04) : 485 - 498