| [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 |