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Evaluation of Subgrid-scale Models in Large-eddy Simulations of Turbulent Flow in a Centrifugal Pump Impeller 被引量:16
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作者 YANG Zhengjun WANG Fujun ZHOU Peijian 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期911-918,共8页
The current research of large eddy simulation (LES) of turbulent flow in pumps mainly concentrates in applying conventional subgrid-scale (SGS) model to simulate turbulent flow, which aims at obtaining the flow fi... The current research of large eddy simulation (LES) of turbulent flow in pumps mainly concentrates in applying conventional subgrid-scale (SGS) model to simulate turbulent flow, which aims at obtaining the flow field in pump. The selection of SGS model is usually not considered seriously, so the accuracy and efficiency of the simulation cannot be ensured. Three SGS models including Smagorinsky-Lilly model, dynamic Smagorinsky model and dynamic mixed model are comparably studied by using the commercial CFD code Fluent combined with its user define function. The simulations are performed for the turbulent flow in a centrifugal pump impeller. The simulation results indicate that the mean flows predicted by the three SGS models agree well with the experimental data obtained from the test that detailed measurements of the flow inside the rotating passages of a six-bladed shrouded centrifugal pump impeller performed using particle image velocimetry (PIV) and laser Doppler velocimetry (LDV). The comparable results show that dynamic mixed model gives the most accurate results for mean flow in the centrifugal pump impeller. The SGS stress of dynamic mixed model is decompose into the scale similar part and the eddy viscous part. The scale similar part of SGS stress plays a significant role in high curvature regions, such as the leading edge and training edge of pump blade. It is also found that the dynamic mixed model is more adaptive to compute turbulence in the pump impeller. The research results presented is useful to improve the computational accuracy and efficiency of LES for centrifugal pumps, and provide important reference for carrying out simulation in similar fluid machineries. 展开更多
关键词 large-eddy simulation subgrid-scale model dynamic mixed model centrifugal pump
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Applying resolved-scale linearly forced isotropic turbulence in rational subgrid-scale modeling 被引量:5
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作者 Chuhan Wang Mingwei Ge 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2019年第3期486-494,共9页
In previous attempts of rational subgrid-scale (SGS) modeling by employing the Kolmogorov equation of filtered (KEF) quantities, it was necessary to assume that the resolved-scale second-order structure function is st... In previous attempts of rational subgrid-scale (SGS) modeling by employing the Kolmogorov equation of filtered (KEF) quantities, it was necessary to assume that the resolved-scale second-order structure function is stationary. Forced isotropic turbulence is often used as a framework for establishing and validating such SGS models based on stationary restrictions, for it generates statistical stationary samples. However, traditional forcing method at low wavenumbers cannot provide an analytic form of forcing term for a complete KEF in physical space, which has been illustrated to be essential in the modeling of such SGS models. Thus, an alternative forcing method giving an analytic forcing term in physical space is needed for rational SGS modeling. Giving an analytic linear driving term in physical space, linearly forced isotropic turbulence should be considered an ideal theoretical framework for rational SGS modeling. In this paper, we demonstrate the feasibility of establishing a rational SGS model with stationary restriction based on linearly forced isotropic turbulence. The performance of this rational SGS model is validated. We, therefore, propose the use of linearly forced isotropic turbulence as a complement to free-decaying isotropic turbulence and low-wavenumber forced isotropic turbulence for SGS model validations. 展开更多
关键词 Homogeneous isotropic TURBULENCE Large-eddy simulation subgrid-scale model FORCED TURBULENCE
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Subgrid-scale model based on the vorticity gradient tensor for rotating turbulent flows 被引量:4
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作者 Han Qi Xinliang Li Changping Yu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2020年第3期692-700,共9页
A new subgrid-scale(SGS)stress model is proposed for rotating turbulent flows,and the new model is based on the traceless symmetric part of the square of the velocity gradient tensor and the symmetric part of the vort... A new subgrid-scale(SGS)stress model is proposed for rotating turbulent flows,and the new model is based on the traceless symmetric part of the square of the velocity gradient tensor and the symmetric part of the vorticity gradient tensor(or the so-called vorticity strain rate tensor).The new subgrid-scale stress model is taken into account the effect of the vortex motions in turbulence,which is reflected on the anti-symmetric part of the velocity gradient tensor.In addition,the eddy viscosity of the new model reproduces the proper scaling as O(y^3)near the wall.Then,the new SGS model is applied in large-eddy simulation of the spanwise rotating turbulent channel flow.Different simulating cases are selected to test the new model.The results demonstrate that the present model can well predict the mean velocity profiles,the turbulence intensities,and the rotating turbulence structures.In addition,it needs no a second filter,and is convenient to be used in the engineering rotational flows. 展开更多
关键词 Large-eddy simulation subgrid-scale model Rotating turbulent channel flow
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Mathematical Constraints in Multiscale Subgrid-Scale Modeling of Nonlinear Systems 被引量:1
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作者 方乐 葛铭纬 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第3期17-20,共4页
To shed light on the subgrid-seale (SGS) modeling methodology of nonlinear systems such as the Navier-Stokes turbulence, we define the concepts of assumption and restriction in the modeling procedure, which are show... To shed light on the subgrid-seale (SGS) modeling methodology of nonlinear systems such as the Navier-Stokes turbulence, we define the concepts of assumption and restriction in the modeling procedure, which are shown by generalized derivation of three general mathematical constraints for different combinations of restrictions. These constraints are verified numerically in a one-dimensional nonlinear advection equation. This study is expected to inspire future research on the SGS modeling methodology of nonlinear systems. 展开更多
关键词 SGS Mathematical Constraints in Multiscale subgrid-scale Modeling of Nonlinear Systems
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Stochastic modeling of subgrid-scale effects on particle motion in forced isotropic turbulence
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作者 Haoshu Shen YuxinWu +2 位作者 Minmin Zhou Hai Zhang Guangxi Yue 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第12期2884-2891,共8页
The subgrid-scale effects on particle motion were investigated in forced isotropic turbulence by DNS and priorLES methods.In the DNS field,the importance of Kolmogorov scaling to preferential accumulation was validate... The subgrid-scale effects on particle motion were investigated in forced isotropic turbulence by DNS and priorLES methods.In the DNS field,the importance of Kolmogorov scaling to preferential accumulation was validated by comparing the radial distribution functions under various particle Stokes numbers.The prior-LES fields were generated by filtering the DNS data.The subgrid-scale Stokes number(StSGS)is a useful tool for determining the effects of subgrid-scale eddies on particle motion.The subgrid-scale eddies tend to accumulate particles with StSGSb 1 and disperse particles with 1 b StSGSb 10.For particles with StSGS?1,the effects of subgrid-scale eddies on particle motion can be neglected.In order to restore the subgrid-scale effects,the Langevin-type stochastic model with optimized parameters was adopted in this study.This model is effective for the particles with StSGS N 1 while has an adverse impact on the particles with StSGSb 1.The results show that the Langevin-type stochastic model tends to smooth the particle distribution in the isotropic turbulence. 展开更多
关键词 Particle DISPERSION subgrid-scale modeling FORCED ISOTROPIC TURBULENCE STOKES number
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A SECOND-ORDER DYNAMIC SUBGRID-SCALE STRESS MODEL
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作者 龚洪瑞 陈十一 +1 位作者 何国威 曹念铮 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2000年第2期165-172,共8页
A second-order dynamic model based on the general relation between the subgrid-scale stress and the velocity gradient tensors was proposed. A priori test of the second-order model was made using moderate resolution di... A second-order dynamic model based on the general relation between the subgrid-scale stress and the velocity gradient tensors was proposed. A priori test of the second-order model was made using moderate resolution direct numerical simulation date at high Reynolds number ( Taylor microscale Reynolds number R-lambda = 102 similar to 216) for homogeneous, isotropic forced flow, decaying flow, and homogeneous rotating flow. Numerical testing shows that the second-order dynamic model significantly improves the correlation coefficient when compared to the first-order dynamic models. 展开更多
关键词 turbulent now dynamic model subgrid-scale stress model Smagorinsky model
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A new mixed subgrid-scale model for large eddy simulation of turbulent drag-reducing flows of viscoelastic fluids
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作者 李凤臣 王璐 蔡伟华 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第7期293-309,共17页
A mixed subgrid-scale(SGS) model based on coherent structures and temporal approximate deconvolution(MCT) is proposed for turbulent drag-reducing flows of viscoelastic fluids. The main idea of the MCT SGS model is... A mixed subgrid-scale(SGS) model based on coherent structures and temporal approximate deconvolution(MCT) is proposed for turbulent drag-reducing flows of viscoelastic fluids. The main idea of the MCT SGS model is to perform spatial filtering for the momentum equation and temporal filtering for the conformation tensor transport equation of turbulent flow of viscoelastic fluid, respectively. The MCT model is suitable for large eddy simulation(LES) of turbulent dragreducing flows of viscoelastic fluids in engineering applications since the model parameters can be easily obtained. The LES of forced homogeneous isotropic turbulence(FHIT) with polymer additives and turbulent channel flow with surfactant additives based on MCT SGS model shows excellent agreements with direct numerical simulation(DNS) results. Compared with the LES results using the temporal approximate deconvolution model(TADM) for FHIT with polymer additives, this mixed SGS model MCT behaves better, regarding the enhancement of calculating parameters such as the Reynolds number.For scientific and engineering research, turbulent flows at high Reynolds numbers are expected, so the MCT model can be a more suitable model for the LES of turbulent drag-reducing flows of viscoelastic fluid with polymer or surfactant additives. 展开更多
关键词 turbulent drag reduction large eddy simulation viscoelastic fluid subgrid-scale model
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Rational subgrid-scale modelling: a short survey
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作者 L.Fang L.P.Lu 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2018年第3期143-146,共4页
We review the previous attempts of rational subgrid-scale (SGS) modelling by employing theKolmogorov equation of filtered quantities. Aiming at explaining and solving the underlyingproblems in these models, we ... We review the previous attempts of rational subgrid-scale (SGS) modelling by employing theKolmogorov equation of filtered quantities. Aiming at explaining and solving the underlyingproblems in these models, we also introduce the recent methodological investigations for therational SGS modelling technique by defining the terms of assumption and restriction. Thesemethodological works are expected to provide instructive criterions for not only the rational SGSmodelling, but also other types of SGS modelling practices. 展开更多
关键词 subgrid-scale modelling Kolmogorov equation Scaling law Eddy-viscosity assumption
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A new dynamic subgrid-scale model using artificial neural network for compressible flow
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作者 Han Qi Xinliang Li +1 位作者 Ning Luo Changping Yu 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2022年第4期267-274,共8页
The subgrid-scale(SGS)kinetic energy has been used to predict the SGS stress in compressible flow and it was resolved through the SGS kinetic energy transport equation in past studies.In this paper,a new SGS eddy-visc... The subgrid-scale(SGS)kinetic energy has been used to predict the SGS stress in compressible flow and it was resolved through the SGS kinetic energy transport equation in past studies.In this paper,a new SGS eddy-viscosity model is proposed using artificial neural network to obtain the SGS kinetic energy precisely,instead of using the SGS kinetic energy equation.Using the infinite series expansion and reserving the first term of the expanded term,we obtain an approximated SGS kinetic energy,which has a high correlation with the real SGS kinetic energy.Then,the coefficient of the modelled SGS kinetic energy is resolved by the artificial neural network and the modelled SGS kinetic energy is more accurate through this method compared to the SGS kinetic energy obtained from the SGS kinetic energy equation.The coefficients of the SGS stress and SGS heat flux terms are determined by the dynamic procedure.The new model is tested in the compressible turbulent channel flow.From the a posterior tests,we know that the new model can precisely predict the mean velocity,the Reynolds stress,the mean temperature and turbulence intensities,etc. 展开更多
关键词 subgrid-scale kinetic energy Eddy-viscosity model Compressible flow
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An improved dynamic subgrid-scale model and its application to large eddy simulation of rotating channel flows 被引量:2
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作者 LIU Nansheng LU Xiyun ZHUANG Lixian 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2004年第4期463-476,共14页
A new dynamic subgrid-scale (SGS) model, which is proved to satisfy the principle of asymptotic material frame indifference (AMFI) for rotating turbulence, is proposed based on physical and mathematical analysis. Comp... A new dynamic subgrid-scale (SGS) model, which is proved to satisfy the principle of asymptotic material frame indifference (AMFI) for rotating turbulence, is proposed based on physical and mathematical analysis. Comparison with direct numerical simulation (DNS) results verifies that the new SGS model is effective for large eddy simulation (LES) on rotating turbulent flow. The SGS model is then applied to the LES of the spanwise rotating turbulent channel flow to investigate the rotation effect on turbulence characteristics, budget terms in the transport equations of resolved Reynolds stresses, and flow structures near the wall regions of the rotating channel. 展开更多
关键词 large EDDY simulation (LES) DYNAMIC subgrid-scale (SGS) model ROTATING turbulent channel flow asymptotic material frame INDIFFERENCE (AMFI).
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Recent understanding on the subgrid-scale modeling of large-eddy simulation in physical space 被引量:4
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作者 FANG Le SHAO Liang BERTOGLIO J.-P. 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第12期2188-2193,共6页
In the last 50 years,the methodology of large-eddy simulation(LES)has been greatly developed,while lots of different subgridscale(SGS)models have appeared.However,the understanding of the procedure of SGS modeling is ... In the last 50 years,the methodology of large-eddy simulation(LES)has been greatly developed,while lots of different subgridscale(SGS)models have appeared.However,the understanding of the procedure of SGS modeling is still not clear.The present contribution aims at reviewing the recent SGS models and,more importantly,expressing our recent understanding on the SGS modeling of LES in physical space.Taking the Kolmogorov equation for filtered quantities(KEF)as an example,it is argued that the KEF alone is not enough to be a closure method.Three physical laws are then introduced to complete this closure procedure and are expected to inspire the future researches of SGS modeling. 展开更多
关键词 large-eddy simulation subgrid-scale modeling Koimogorov equation
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Assessment of subgrid-scale models in wall-modeled large-eddy simulations of turbulent channel flows 被引量:2
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作者 Wei-wen Zhao Fu-chang Zhou +1 位作者 Guo-qing Fan De-cheng Wan 《Journal of Hydrodynamics》 SCIE EI CSCD 2023年第3期407-416,共10页
Considering the demanding of grid requirements for high-Reynolds-number wall-bounded flow,the wall-modeled large-eddy simulation(WMLES)is an attractive method to deal with near wall turbulence.However,the effect of su... Considering the demanding of grid requirements for high-Reynolds-number wall-bounded flow,the wall-modeled large-eddy simulation(WMLES)is an attractive method to deal with near wall turbulence.However,the effect of subgrid-scale(SGS)models for wall-bounded turbulent flow in combination with wall stress models is still unclear.In this paper,turbulent channel flow at Reτ=1000 are numerically simulated by WMLES in conjunction with four different SGS models,i.e.,the wall-adapting local eddy-viscosity model,the dynamic Smagorinsky model,the dynamic SGS kinetic energy model and the dynamic Lagrangian model.The mean velocity profiles are compared with the law of the wall,and the velocity fluctuations are compared with direct numerical simulation data.The energy spectrum of velocity and wall pressure fluctuations are presented and the role of SGS models on predicting turbulent channel flow with WMLES is discussed. 展开更多
关键词 Wall-modeled large-eddy simulation(WMLES) subgrid-scale(SGS)model turbulent channel flow energy spectra
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An improved dynamic subgrid-scale model and its application to large eddy simulation of stratified channel flows
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作者 仲峰泉 庄礼贤 +1 位作者 刘难生 陆夕云 《Science China Mathematics》 SCIE 2002年第7期888-899,共12页
In the present paper, a new dynamic subgrid-scale (SGS) model of turbulent stress and heat flux for stratified shear flow is proposed. Based on our calculated results of stratified channel flow, the dynamic subgrid-sc... In the present paper, a new dynamic subgrid-scale (SGS) model of turbulent stress and heat flux for stratified shear flow is proposed. Based on our calculated results of stratified channel flow, the dynamic subgrid-scale model developed in this paper is shown to be effective for large eddy simulation (LES) of stratified turbulent shear flows. The new SGS model is then applied to the LES of the stratified turbulent channel flow to investigate the coupled shear and buoyancy effects on the behavior of turbulent statistics, turbulent heat transfer and flow structures at different Richardson numbers. 展开更多
关键词 large EDDY simulation (LES) DYNAMIC subgrid-scale (SGS) model STRATIFIED shear turbulence turbulent channel flow.
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A dynamic subgrid-scale model for the large eddy simulation of stratified flow
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作者 刘宁宇 陆夕云 庄礼贤 《Science China Mathematics》 SCIE 2000年第4期391-399,共9页
A new dynamic subgrid-scale (SGS) model, including subgrid turbulent stress and heat flux models for stratified shear flow is proposed by using Yoshizawa’ s eddy viscosity model as a base model. Based on our calculat... A new dynamic subgrid-scale (SGS) model, including subgrid turbulent stress and heat flux models for stratified shear flow is proposed by using Yoshizawa’ s eddy viscosity model as a base model. Based on our calculated results, the dynamic subgrid-scale model developed here is effective for the large eddy simulation (LES) of stratified turbulent channel flows. The new SGS model is then applied to the large eddy simulation of stratified turbulent channel flow under gravity to investigate the coupled shear and buoyancy effects on the near-wall turbulent statistics and the turbulent heat transfer at different Richardson numbers. The critical Richardson number predicted by the present calculation is in good agreement with the value of theoretical analysis. 展开更多
关键词 large EDDY simulation (LES) subgrid-scale model (SGS) STRATIFIED TURBULENCE heat transfer.
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一种基于浸没边界-大涡模拟的降落伞流固耦合计算方法
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作者 张扬 濮天梅 +2 位作者 周春华 欧阳弘扬 童旭东 《空气动力学学报》 北大核心 2025年第2期96-109,I0002,共15页
降落伞充气过程涉及复杂的流固耦合(fluid-structure interaction,FSI)现象,浸没边界(immersed boundary,IB)方法作为一种边界非协调方法,适合处理这种非线性大变形FSI问题。将Mittal等提出的尖锐界面IB方法与大涡模拟(large eddy simul... 降落伞充气过程涉及复杂的流固耦合(fluid-structure interaction,FSI)现象,浸没边界(immersed boundary,IB)方法作为一种边界非协调方法,适合处理这种非线性大变形FSI问题。将Mittal等提出的尖锐界面IB方法与大涡模拟(large eddy simulation,LES)相结合(LES/IB),应用于中高雷诺数(Re)降落伞绕流的模拟。在此基础上,结合非线性有限元方法,建立了一种基于适合复杂外形非均匀湍流的动态Vreman亚格子(Vreman subgrid-scale,Vreman SGS)模型的FSI方法,用于模拟降落伞充气过程。最后,通过经典的圆柱绕流算例(Re=3900)验证所发展的LES/IB方法的准确性。结果表明,LES/IB方法对平均阻力系数(C_(D))、后缘点平均背压系数(-C_(p,b))和斯特劳哈尔数(St)的计算结果与直接数值模拟、LES和实验结果吻合较好,误差均低于8%。此外,利用发展的Vreman SGS模型对典型的圆伞和十字伞充气过程中的气动性能和结构响应进行了分析,并与Smagorinsky SGS模型进行了对比。结果表明,在降落伞充气呼吸阶段,两者对阻力系数和投影面积的计算结果吻合较好,相对误差均在5%以内,验证了本文FSI方法的可靠性。 展开更多
关键词 降落伞充气 流固耦合 浸没边界方法 大涡模拟 亚格子模型
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Large eddy simulation of low-Reynolds-number flow past the SD7003 airfoil with an improved high-precision IPDG method
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作者 Shixi Hao Ming Zhao +5 位作者 Qiushi Ding Jiabing Xiao Yanan Chen Wei Liu Xiaojian Li Zhengxian Liu 《Acta Mechanica Sinica》 2025年第2期70-87,共18页
At low-Reynolds-number,the performance of airfoil is known to be greatly affected by the formation and burst of a laminar separation bubble(LSB),which requires a more precise simulation of the delicate flow structures... At low-Reynolds-number,the performance of airfoil is known to be greatly affected by the formation and burst of a laminar separation bubble(LSB),which requires a more precise simulation of the delicate flow structures.A framework based on the interior penalty discontinuous Galerkin method and large eddy simulation approach was adopted in the present study.The performances of various subgrid models,including the Smagorinsky(SM)model,the dynamic Smagorinsky(DSM)model,the wall-adapting local-eddy-viscosity(WALE)model,and the VREMAN model,have been analyzed through flow simulations of the SD7003 airfoil at a Reynolds number of 60000.It turns out that the SM model fails to predict the emergence of LSB,even modified by the Van-Driest damping function.On the contrary,the best agreement is generally achieved by the WALE model in terms of flow separation,reattachment,and transition locations,together with the aerodynamic loads.Furthermore,the influence of numerical dissipation has also been discussed through the comparison of skin friction and resolved Reynolds stresses.As numerical dissipation decreases,the prediction accuracy of the WALE model degrades.Meanwhile,nonlinear variation could be observed from the performances of the DSM model,which could be attributed to the interaction between the numerical dissipation and the subgrid model. 展开更多
关键词 Discontinuous Galerkin Interior penalty method subgrid-scale model Large eddy simulation Laminar separation
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基于动态亚格子模型的圆柱-翼型干涉噪声数值模拟研究
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作者 卜怡楷 李蓝萱 +3 位作者 韩啸 黄江涛 徐家宽 白俊强 《航空科学技术》 2025年第9期9-18,共10页
气动噪声的精确预测和降噪控制问题是计算流体力学和计算声学领域的研究热点和难点,其中,圆柱-翼型干涉噪声是研究湍流干涉宽频噪声的典型算例。为提高流场和气动噪声的数值预测精度,本文采用动态亚格子模型进行流场的高精度数值模拟,... 气动噪声的精确预测和降噪控制问题是计算流体力学和计算声学领域的研究热点和难点,其中,圆柱-翼型干涉噪声是研究湍流干涉宽频噪声的典型算例。为提高流场和气动噪声的数值预测精度,本文采用动态亚格子模型进行流场的高精度数值模拟,获得精细的流场脉动信息之后与Lighthill声比拟理论结合,建立混合计算声学求解框架,对圆柱-翼型干涉模型的气动噪声进行高精度预测。通过与试验结果对比证明了该数值模拟框架的准确性,在此基础上开展了变参数计算。结果表明,增大圆柱直径或换为方柱虽然会降低涡脱落频率,但会增大涡脱落强度和远场噪声;适当减小翼型前缘半径或增大圆柱-翼型间距能够减小远场噪声。研究结果为圆柱-翼型干涉气动噪声的高精度预测与该类噪声的降噪设计提供了理论支撑。 展开更多
关键词 动态亚格子模型 翼型干涉噪声 大涡模拟 Lighthill声比拟理论 混合计算气动声学方法
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空腔噪声数值计算方法及噪声抑制方法研究
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作者 宁舜山 张倩 +2 位作者 任杰 李惟海 王振东 《装备环境工程》 2025年第7期105-113,共9页
目的 显著降低空腔噪声问题对先进飞行器、动力装置等研制的影响,以及提高空腔噪声数值计算精度。方法 采用大涡模拟和计算气动声学相结合的方法,对典型开式空腔噪声进行数值计算,分析空腔噪声的产生机理、总声压级分布特性和典型监测... 目的 显著降低空腔噪声问题对先进飞行器、动力装置等研制的影响,以及提高空腔噪声数值计算精度。方法 采用大涡模拟和计算气动声学相结合的方法,对典型开式空腔噪声进行数值计算,分析空腔噪声的产生机理、总声压级分布特性和典型监测点的噪声频谱特性,研究大涡模拟不同亚格子尺度模型对数值计算结果的影响,提出一种基于空腔前后壁修形的噪声抑制方法。结果 计算采用不同亚格子尺度模型时空腔噪声的总声压级分布和噪声频谱,发现采用WALE(Wall Adapting Local Eddy Viscosity)模型时数值计算结果与试验值吻合最好,采用DSM(Dynamic Smagorinsky-Lilly)模型时次之,采用SM(Smagorinsky-Lilly)模型时误差相对最大。此外,还计算了前后壁修形对空腔噪声的抑制效果,发现其能显著改善腔内的强噪声环境。不同亚格子尺度模型会对空腔噪声数值计算结果产生影响,采用WALE模型的数值计算结果与试验值最接近。此外,空腔前后壁修形可显著抑制空腔噪声,Ma=0.85和Ma=0.6时,腔内总声压级最大降幅分别达到了7.82、6.63 dB,主模态声压级分别降低了4.56、5.65 dB,同时主模态频率向低频分别移动了27.14、27.22Hz。结论 主模态频率的大幅移动可避开空腔声共振频率,有效避免了空腔结构及腔内武器装备发生随机振动,甚至声疲劳破坏。 展开更多
关键词 空腔噪声 噪声控制 大涡模拟 亚格子尺度模型 噪声频谱 总声压级
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风琴管喷嘴空化水射流流场的大涡模拟 被引量:4
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作者 王连安 徐艳 +3 位作者 王尊策 李森 张井龙 刘海水 《机械科学与技术》 CSCD 北大核心 2024年第9期1514-1521,共8页
针对空化水射流流场空化云演化采用RANS方法模拟不准确的问题,采用大涡模拟(Large-eddy simulation,LES)对风琴管空化喷嘴流场进行数值模拟。基于Mixture多相流模型和Zwart-Gerber-Belamri(ZGB)空化模型,分别采用SM模型(Smagorinsky-Lil... 针对空化水射流流场空化云演化采用RANS方法模拟不准确的问题,采用大涡模拟(Large-eddy simulation,LES)对风琴管空化喷嘴流场进行数值模拟。基于Mixture多相流模型和Zwart-Gerber-Belamri(ZGB)空化模型,分别采用SM模型(Smagorinsky-Lilly model,SM)、壁面适应的局部涡黏模型(Wall-adapted local eddy-viscous,WALE)和代数壁面模型(Wall-modeled large eddy simulation,WMLES)3种不同的亚格子模型,对风琴管喷嘴空化水射流流场进行数值模拟,分析空化水射流特性、空化云演化规律及脱落频率。结果表明:WALE模型可以较为准确模拟空化云演化周期,与高速摄像拍摄结果吻合较好;在喷嘴内圆柱段以及扩散段壁面附近产生涡环,加快了空化泡析出,WALE模型较好的模拟了涡环结构;涡量分析表明涡流在喷嘴出口附近出现,射流的末端空化泡破碎产生扰动,大尺度涡演化为小尺度涡,WALE模型模拟出涡的破碎范围较SM模型更大,WMLES模型未捕捉到小尺度涡。 展开更多
关键词 大涡模拟 亚格子模型 风琴管喷嘴 空化水射流
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基于LES的射流火焰湍流辐射交互作用研究 被引量:1
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作者 宋绪光 金捷 +1 位作者 张敏琦 王方 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2024年第8期2667-2676,共10页
在大涡模拟中,研究了亚格子湍流辐射交互作用(SGS-TRI)对Sandia Flame D和Flame 4D(Scaled Sandia flame D)辐射源项的影响。模拟中,采用概率密度函数输运方程(TPDF)湍流燃烧模型模拟湍流燃烧过程,球谐函数(P1近似)法、灰气体加权和模型... 在大涡模拟中,研究了亚格子湍流辐射交互作用(SGS-TRI)对Sandia Flame D和Flame 4D(Scaled Sandia flame D)辐射源项的影响。模拟中,采用概率密度函数输运方程(TPDF)湍流燃烧模型模拟湍流燃烧过程,球谐函数(P1近似)法、灰气体加权和模型(WSGGM)模拟辐射换热。采用湍流涡团光学薄脉动近似(OTFA)处理滤波吸收项,分别采用考虑和忽略SGS-TRI的方法求解滤波发射项。结果显示,SGS-TRI仅在辐射源项本身数值较小的区域对时均辐射源项有相对较大的影响(最大为25%);考虑和忽略SGS-TRI计算得到的时均温度以及CO_(2)浓度等径向分布基本重合(相对差别小于3%)。因此,亚格子湍流辐射交互作用对无碳烟湍流射流火焰(Flame D和Flame 4D)的影响较小。 展开更多
关键词 湍流辐射交互作用 亚格子 大涡模拟 概率密度函数输运方程模型 辐射传热
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