中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Joint-constraint model for large-eddy simulation of helical turbulence

文献类型:期刊论文

作者Yu CP(于长平); Xiao ZL; Shi YP; Chen SY
刊名PHYSICAL REVIEW E
出版日期2014-04-29
卷号89期号:4页码:43021
通讯作者邮箱z.xiao@pku.edu.cn
ISSN号1539-3755
产权排序[Yu, Changping] Chinese Acad Sci, Inst Mech, LHD, Beijing 100190, Peoples R China; [Yu, Changping; Xiao, Zuoli; Shi, Yipeng; Chen, Shiyi] Peking Univ, Coll Engn, State Key Lab Turbulence & Complex Syst, Beijing 100871, Peoples R China; [Xiao, Zuoli; Shi, Yipeng; Chen, Shiyi] Peking Univ, Coll Engn, Ctr Appl Phys & Technol, Beijing 100871, Peoples R China
通讯作者Xiao, ZL (reprint author), Peking Univ, Coll Engn, State Key Lab Turbulence & Complex Syst, Beijing 100871, Peoples R China.
合作状况国内
中文摘要A three-term mixed subgrid-scale (SGS) stress model is proposed for large-eddy simulation (LES) of helical turbulence. The newmodel includes a Smagorinsky-Lilly term, a velocity gradient term, and a symmetric vorticity gradient term. The model coefficients are determined by minimizing the mean square error between the realistic and modeled Leonard stresses under a joint constraint of kinetic energy and helicity fluxes. The model formulated as such is referred to as joint-constraint dynamic three-term model (JCD3TM). First, the new model is evaluated a priori using the direct numerical simulation (DNS) data of homogeneous isotropic turbulence with helical forcing. It is shown that the SGS dissipation fractions from all three terms in JCD3TM have the properties of length-scale invariance in inertial subrange. JCD3TM can predict the SGS stresses, energy flux, and helicity flux more accurately than the dynamic Smagorinsky model (DSM) and dynamic mixed helical model (DMHM) in both pointwise and statistical senses. Then, the performance of JCD3TM is tested a posteriori in LESs of both forced and freely decaying helical isotropic turbulence. It is found that JCD3TM possesses certain features of superiority over the other two models in predicting the energy spectrum, helicity spectrum, high-order statistics, etc. It is also noteworthy that JCD3TM is capable of simulating the evolutions of both energy and helicity spectra more precisely than other models in decaying helical turbulence. We claim that the present SGS model can capture the main helical features of turbulent motions and may serve as a useful tool for LES of helical turbulent flows.
分类号一类
收录类别SCI ; EI
资助信息We are grateful to Jianchun Wang and Kun Yang for many beneficial discussions on this work. Numerical simulations were carried out using the Dragon-1 cluster computer in the College of Engineering at Peking University and the Tianhe-1A supercomputing facility at the National Supercomputer Center in Tianjin, China. We acknowledge the financial support provided by the National Natural Science Foundation of China (GrantsNo. 91130001, No. 11221061, No. 11372007, and No. 11372330). This work was also supported by the 973 Program (Grant No. 2013CB834100) and the 863 Program (Grant No. 2012AA01A304).
原文出处http://dx.doi.org/10.1103/PhysRevE.89.043021
语种英语
WOS记录号WOS:000335232600008
公开日期2014-06-05
源URL[http://dspace.imech.ac.cn/handle/311007/48846]  
专题力学研究所_高温气体动力学国家重点实验室
推荐引用方式
GB/T 7714
Yu CP,Xiao ZL,Shi YP,et al. Joint-constraint model for large-eddy simulation of helical turbulence[J]. PHYSICAL REVIEW E,2014,89(4):43021.
APA Yu CP,Xiao ZL,Shi YP,&Chen SY.(2014).Joint-constraint model for large-eddy simulation of helical turbulence.PHYSICAL REVIEW E,89(4),43021.
MLA Yu CP,et al."Joint-constraint model for large-eddy simulation of helical turbulence".PHYSICAL REVIEW E 89.4(2014):43021.

入库方式: OAI收割

来源:力学研究所

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