On the Time Evolution of the Turbulent Kinetic Energy Spectrum for Decaying Turbulence in the Convective Boundary Layer

被引:0
作者
A. G. Goulart
B. E. J. Bodmann
M. T. M. B. de Vilhena
P. M. M. Soares
D. M. Moreira
机构
[1] Federal University of the Pampa,
[2] Federal University of Rio Grande do Sul,undefined
[3] University of Lisbon,undefined
[4] Federal University of the Pampa,undefined
来源
Boundary-Layer Meteorology | 2011年 / 138卷
关键词
Convective boundary layer; Turbulent kinetic energy; Vertical non-homogeneous turbulence field;
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学科分类号
摘要
Our focus is the time evolution of the turbulent kinetic energy for decaying turbulence in the convective boundary layer. The theoretical model with buoyancy and inertial transfer terms has been extended by a source term due to mechanical energy and validated against large-eddy simulation data. The mechanical effects in a boundary layer of height zi at a convective surface-layer height z = 0.05zi are significant in the time evolution of the vertical component of the spectrum, i.e. they enhance the decay time scale by more than an order of magnitude. Our findings suggest that shear effects seem to feedback to eddies with smaller wavenumbers, preserving the original shape of the spectrum, and preventing the spectrum from shifting towards shorter wavelengths. This occurs in the case where thermal effects only are considered.
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页码:61 / 75
页数:14
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共 29 条
  • [1] Batchelor GK(1949)Diffusion in a field of homogeneous turbulence. I Eulerian analysis Aust J Sci Res 2 437-450
  • [2] Cuijpers JWM(1995)A simple parameterization of cloud water related variables for use in boundary layer models J Atmos Sci 52 2486-2490
  • [3] Bechtold P(2003)A theoretical model for the study of the convective turbulence decay and comparison witch LES data Boundary-Layer Meteorol 107 143-155
  • [4] Goulart A(2007)Temporal, lateral and longitudinal eddy diffusivities for a decaying turbulence in the convective boundary layer Ecol Model 204 516-522
  • [5] Degrazia G(1989)Solution of parabolic partial differential equations Appl Math Model 5 448-449
  • [6] Rizza U(1978)Horizontal velocity spectra in an unstable surface layer J Atmos Sci 35 18-23
  • [7] Anfossi D(1989)The spectral velocity tensor for homogeneous boundary-layer turbulence Boundary-Layer Meteorol 47 149-193
  • [8] Goulart A(1994)A comparison of shear-and buoyancy-driven planetary boundary layer flows J Atmos Sci 51 999-1022
  • [9] Vilhena MTMB(1954)Osnovnye zakonomernosti turbulentnogo peremeshivanija v prizemnom sloe atmosfery (Basic laws of turbulent mixing in the atmosphere near the ground) Trudy Geofiz Inst AN SSSR 24 163-187
  • [10] Degrazia G(1986)The decay of convective turbulence J Atmos Sci 43 532-546