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Turbulence Model Investigations on the Boundary Layer Flow with Adverse Pressure Gradients 被引量:1
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作者 Yong Zhao Zhi Zong +1 位作者 Li Zoli Tianlin Wang 《Journal of Marine Science and Application》 CSCD 2015年第2期170-174,共5页
In this paper, a numerical study of flow in the turbulence boundary layer with adverse and pressure gradients (APGs) is conducted by using Reynolds-averaged Navier-Stokes (RANS) equations. This research chooses si... In this paper, a numerical study of flow in the turbulence boundary layer with adverse and pressure gradients (APGs) is conducted by using Reynolds-averaged Navier-Stokes (RANS) equations. This research chooses six typical turbulence models, which are critical to the computing precision, and to evaluating the issue of APGs. Local frictional resistance coefficient is compared between numerical and experimental results. The same comparisons of dimensionless averaged velocity profiles are also performed. It is found that results generated by Wilcox (2006) k-co are most close to the experimental data. Meanwhile, turbulent quantities such as turbulent kinetic energy and Reynolds-stress are also studied. 展开更多
关键词 adverse pressure gradient turbulent boundary layer turbulence models local frictional resistance coefficient RANS reynolds-stress
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SECOND-MOMENT CLOSURE FOR MODELLING THE NEAR-WALL TURBULENCE IN 3D MEAN FLOWS
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作者 章光华 熊国华 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 1994年第2期103-109,共7页
A second-moment closure for the near-wall turbulence is proposed. The limiting behaviour of this closure near a wall is consistent with that of the exact Reynolds-stress transport equations, and it converts asymptotic... A second-moment closure for the near-wall turbulence is proposed. The limiting behaviour of this closure near a wall is consistent with that of the exact Reynolds-stress transport equations, and it converts asymptotically into a high- Reynolds-number closure remote from the wall. The closure is applied to a pressure- driven 3D transient channel flow. The predicted results are in fair agreement with the DNS data. 展开更多
关键词 near-wall turbulence second-moment closure 3D transient channel flow distributions of reynolds-stress components
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Research of the rapid pressure-strain correlation model in the rapid distortion limit 被引量:2
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作者 HUANG SiYuan FU Song 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第9期1380-1389,共10页
Even though a number of rapid pressure-strain models have been suggested and successfully tested for different flow situations by various authors,the model proposals still exhibit some apparent deficiencies when subje... Even though a number of rapid pressure-strain models have been suggested and successfully tested for different flow situations by various authors,the model proposals still exhibit some apparent deficiencies when subjected to the flows with rapid distortion. From Mansour's relatively straightforward rapid distortion analysis,if an initially anisotropic flow undergoes a purely rapid rotation,the anisotropy measures will exhibit the behavior of the damped oscillations. Within the current framework of modeling the rapid pressure-strain correlation,i.e.,the models based on the assumption that the M-tensor for the rapid pressure-strain term is expand-able in the Reynolds-stress anisotropy tensor alone,all the model predictions fail to give the damped oscillations in the turbulence anisotropy. In the case of initially isotropic turbulence subjected to rapid distortion,Sj?gren and Johansson showed that all the existing rapid pressure-strain models would deliver the identical path in the anisotropy-invariant map for both homogeneous plane strain and shear flows. The rapid distortion analysis shows two distinct curves reflecting different flow physics. In this work,we try to present a possible way to create a system that can overcome these deficiencies with the aid of the rapid distortion theory (RDT). 展开更多
关键词 reynolds-stress turbulence Model RAPID pressure-strain correlation RAPID DISTORTION theory
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A CONSTITUTIVE THEORY FOR THE REYNOLDS-STRESS CLOSURES IN TURBULENCE MODELLING 被引量:1
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作者 L. Y. Tao,(Department of Mechanical Engineering, University of Pittsburgh, PA15261,USA)G. Q. Chen(Centre for Environmental Sciences, Peking University, Beijing 100871,P. R. China)K. R. Rajagopal(Department of Mechanical Engineering, University of Pittsbur 《Journal of Hydrodynamics》 SCIE EI CSCD 1996年第1期103-109,共7页
For the Reynolds-stress closures in turbulence modelling, a constitutive theory is developed based on the principle of frame indifference and the theory of invariants. The present study sheds light on existing closure... For the Reynolds-stress closures in turbulence modelling, a constitutive theory is developed based on the principle of frame indifference and the theory of invariants. The present study sheds light on existing closure models and is instructive to developing new closure relations. 展开更多
关键词 turbulence modelling reynolds-stress constitutive theory
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