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Multi-scale analysis of subgrid stress and energy dissipation in turbulent channel flow 被引量:1

Multi-scale analysis of subgrid stress and energy dissipation in turbulent channel flow
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摘要 In present study, the subgrid scale (SGS) stress and dissipation for multiscale formulation of large eddy simulation are analyzed using the data of turbulent channel flow at Ret = 180 obtained by direct numerical simulation. It is found that the small scale SGS stress is much smaller than the large scale SGS stress for all the stress components. The dominant contributor to large scale SGS stress is the cross stress between small scale and subgrid scale motions, while the cross stress between large scale and subgrid scale motions make major contributions to small scale SGS stress. The energy transfer from resolved large scales to subgrid scales is mainly caused by SGS Reynolds stress, while that between resolved small scales and subgrid scales are mainly due to the cross stress. The multiscale formulation of SGS models are evaluated a priori, and it is found that the small- small model is superior to other variants in terms of SGS dissipation. In present study, the subgrid scale (SGS) stress and dissipation for multiscale formulation of large eddy simulation are analyzed using the data of turbulent channel flow at Ret = 180 obtained by direct numerical simulation. It is found that the small scale SGS stress is much smaller than the large scale SGS stress for all the stress components. The dominant contributor to large scale SGS stress is the cross stress between small scale and subgrid scale motions, while the cross stress between large scale and subgrid scale motions make major contributions to small scale SGS stress. The energy transfer from resolved large scales to subgrid scales is mainly caused by SGS Reynolds stress, while that between resolved small scales and subgrid scales are mainly due to the cross stress. The multiscale formulation of SGS models are evaluated a priori, and it is found that the small- small model is superior to other variants in terms of SGS dissipation.
作者 Chun-Xiao Xu
机构地区 School of Aerospace
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2010年第1期81-90,共10页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China(10472053 and 10772098)
关键词 SGS stress SGS dissipation - Multi-scale energy transfer Multi-scale SGS model - Turbulent channel flow SGS stress SGS dissipation - Multi-scale energy transfer Multi-scale SGS model - Turbulent channel flow
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  • 2Hughes, T.J.R., Mazzei, L., Oberai, A.A., Wray, A.A.: The multiscale formulation of large eddy simulation: decay of homogeneous isotropic turbulence. Phys. Fluids 13, 505 (2001). 被引量:1
  • 3Hughes, T.J.R., Oberai, A.A., Mazzei, L.: Large eddy simulation of turbulent channel flowby the variational multiscale method. Phys. Fluids 13, 1784 (2001). 被引量:1
  • 4Sagaut, E, Levasseur, V.: Sensitivity of spectral variational multiscale methods for large-eddy simulation of isotropic turbulence. Phys. Fluids 17, 035113 (2005). 被引量:1
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