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   large eddy simulation of compressible parallel jet flow and comparison of four subgrid-scale models  
   
نویسنده liu q. ,dong y. h. ,lai h.
منبع journal of applied fluid mechanics - 2019 - دوره : 12 - شماره : 5 - صفحه:1599 -1614
چکیده    Large eddy simulations of a three-dimensional (3d) compressible parallel jet flow at mach number of 0.9 and reynolds number 2000 are carried out. four subgridscale (sgs) models, namely, the standard smagorinsky model (sm), the selective mixed scale model (smsm), the coherentstructure smagorinsky model (csm) and the coherent-structure kineticenergy model (ckm) are employed, respectively, and compared. the purpose of the study is to compare the sgs models and to find their suitability of predicting the flow transition in the potential core of the jet, and so as to provide a reference for selecting sgs models in simulating compressible jet flows, which is a kind of prototype flow in fluid dynamics and aeroacoustics. a finite difference code with fourthorder spatial and very low storage thirdorder explicit runge-kutta temporal schemes is introduced and employed for calculation. the code, which was previously designed for simulating shock/boundary-layer interactions and had been widely validated in simulating a variety of compressible flows, is rewritten and changed into parallelized using the openmp protocol so that it can be run on memoryshared multicore workstations. the computational domain size and the index of les resolution quality are checked to validate the simulations. detailed comparisons of the four sgs models are carried out. the results of averaged flowfield including the velocity profiles and the developments of shearlayer, the instantaneous vortical flows and the viscous dissipation, the predicted turbulence statistics and the balances of momentum equation are studied and compared. the results show that although the normalized developed velocity profiles are well predicted by the four sgs models, the length of the potential core and the development of the shearlayer reveal that the sm has excessive sgs viscosity and is therefore too dissipative to correctly predict the flow transition and shearlayer expansion. the model smears small vortical scales and lowers down the effective reynolds number of the flow because of the overpredicted sgs viscosity and dissipation. the turbulence statistics and the balances of momentum equation have also confirmed the excessive dissipation of the sm. the ckm is also found to overpredict the sgs viscosity. compared with these two models, the smsm and the csm have performed well in predicting both the averaged and the instantaneous flow-fields of the compressible jet. and they are localized models which are computationally efficient and easy for coding. therefore, the smsm and the csm are recommended for the les of the compressible jet.
کلیدواژه jet flow ,les ,localized sgs model ,selective mixed scale model ,coherent-structure smagorinsky model ,coherent-structure kinetic-energy model
آدرس east china university of science and technology, school of mechanical and power engineering, china, shanghai university, shanghai institute of applied mathematics and mechanics, china, east china university of science and technology, school of mechanical and power engineering, china
پست الکترونیکی hlai@ecust.edu.cn
 
     
   
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