QIU Xiang, HUANG Yong-xiang, LU Zhi-ming, LIU Yu-lu. Large Eddy Simulation of Turbulent Statistical and Transport Properties in Stably Stratified Flows[J]. Applied Mathematics and Mechanics, 2009, 30(2): 149-159.
Citation: QIU Xiang, HUANG Yong-xiang, LU Zhi-ming, LIU Yu-lu. Large Eddy Simulation of Turbulent Statistical and Transport Properties in Stably Stratified Flows[J]. Applied Mathematics and Mechanics, 2009, 30(2): 149-159.

Large Eddy Simulation of Turbulent Statistical and Transport Properties in Stably Stratified Flows

  • Received Date: 2008-06-25
  • Rev Recd Date: 2008-11-14
  • Publish Date: 2009-02-15
  • Three dimensional large eddy simulation (LES) was performed in the investigation of stably stratified turbulence with a sharp thermal interface. Main results are focused on the turbulent characteristic scale, statistical properties, transport properties, and temporal and spatial evolution of the scalar field. Results show that the buoyancy scale increases first, and then goes to a certain constant value. The stronger the mean shear, the larger the buoyancy scale. The overturning scale increases with the flow, and the mean shear improves the overturning scale. The flatness factor of temperature departs from the Gaussian distribution in a fairly large region, and its statistical properties are clearly different from those of the veloaty fluctuations in a strong stratified case. Turbulent mixing starts from small scale motions, and then extends to large scale motions.
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  • [1]
    Hansen J, Russell G, Lacis A,et al.Climate response times:dependence on climate sensitivity and ocean mixing[J].Science,1985,229(4716):857-859. doi: 10.1126/science.229.4716.857
    [2]
    Hopfinger E J. Turbulence in stratified fluids:a review[J].J Geophys Res,1987,92(C5):5287-5303. doi: 10.1029/JC092iC05p05287
    [3]
    Fernando H J S. Turbulent mixing in stratified fluids[J].Annu Rev Fluid Mech,1991,23(1):455-493. doi: 10.1146/annurev.fl.23.010191.002323
    [4]
    Riley J J, Lelong M P. Fluid motion in the presence of strong stratification[J].Annu Rev Fluid Mech,2000,32(1):613-657. doi: 10.1146/annurev.fluid.32.1.613
    [5]
    Peltier W R, Caulfield C P. Mixing efficiency in stratified shear flows[J].Annu Rev Fluid Mech,2003,35(1):135-167. doi: 10.1146/annurev.fluid.35.101101.161144
    [6]
    Ivey G N, Winters K B, Koseff J R. Density stratification, turbulence, but how much mixing?[J].Annu Rev Fluid Mech,2008,40:169-184. doi: 10.1146/annurev.fluid.39.050905.110314
    [7]
    Gerz T, Schumann U, Elghorashi S E. Direct numerical simulation of stratified homogeneous turbulent shear flows[J].J Fluid Mech,1989,200:563-594. doi: 10.1017/S0022112089000765
    [8]
    Holt S E, Koseff J R, Ferziger H. A numerical study of the evolution and structure of homogeneous stably stratified sheared turbulence[J].J Fluid Mech,1992,237:499-539. doi: 10.1017/S0022112092003513
    [9]
    Jacobitz F G, Sarkar S, Atta C W V. Direct numerical simulation of turbulence evolution in a uniformly sheared and stably stratified flow[J].J Fluid Mech,1997,342:231-261. doi: 10.1017/S0022112097005478
    [10]
    Shih L H, Koseff J R, Ferziger J H,et al.Scaling and parameterization of stratified homogeneous turbulent shear flow[J].J Fluid Mech,2000,412:1-20. doi: 10.1017/S0022112000008405
    [11]
    Gerz T, Howell J, Mahrt L. Vertex structures and microfronts[J]. Phys Fluids,1994,6:1242-1251. doi: 10.1063/1.868293
    [12]
    Diamessis P J, Nomura K K. Interactions of vorticity, rate-of-strain and scalar gradient in stratified homogeneous sheared turbulence[J].Phys Fluids,2000,12:1166-1188. doi: 10.1063/1.870369
    [13]
    Komori S, Nagata K. Effects of molecular diffusivities on counter-gradient scalar and momentum transfer in strongly stable stratification[J].J Fluid Mech,1996,326:205-237. doi: 10.1017/S0022112096008294
    [14]
    Nagata K, Komori S. The difference in turbulent diffusion between active and passive scalars in stable thermal stratification[J].J Fluid Mech,2001,430:361-380. doi: 10.1017/S0022112000003037
    [15]
    Kaltenbach H J, Gerz T, Schumann U. Large-eddy simulation of homogeneous and diffusion in stably stratified shear flow[J].J Fluid Mech,1994,280:1-40. doi: 10.1017/S0022112094002831
    [16]
    Dong Y H,Lu X Y,Zhuang L X.Large eddy simulation of thermally-stratified turbulent channel flow with temperature oscillation on the bottom wall[J].J Hydrodyn, Ser B,2004,16(1):34-38.
    [17]
    Qiu X, Zhang D X, Lu Z M,et al. Turbulent mixing and evolution in a stably stratified two-layer fluid[J].J Hydrodyn, Ser B,2009.
    [18]
    Turner J S. Buoyancy Effects in Fluids[M].Cambridge:Cambridge University Press, 1973.
    [19]
    Yoon K, Warhaft Z. The evolution of grid-generated turbulence under condition of stable thermal stratification[J].J Fluid Mech,1990,215:601-638. doi: 10.1017/S0022112090002786
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