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Simulation Analysis of New Energy Vehicle Engine Cooling System Based on K-E Turbulent Flow Mathematical Model
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作者 Hongyu Mu Yinyan Wang +7 位作者 Chuanlei Yang Hong Teng Xingtian Zhao Hongquan Lu Dechun Wang Shiyang Hao Xiaolong Zhang Yan Jin 《Energy Engineering》 EI 2023年第10期2325-2342,共18页
New energy vehicles have better clean and environmental protection characteristics than traditional fuel vehicles.The new energy engine cooling technology is critical in the design of new energy vehicles.This paper us... New energy vehicles have better clean and environmental protection characteristics than traditional fuel vehicles.The new energy engine cooling technology is critical in the design of new energy vehicles.This paper used oneand three-way joint simulation methods to simulate the refrigeration system of new energy vehicles.Firstly,a k-εturbulent flow model for the cooling pump flow field is established based on the principle of computational fluid dynamics.Then,the CFD commercial fluid analysis software FLUENT is used to simulate the flow field of the cooling pump under different inlet flow conditions.This paper proposes an optimization scheme for new energy vehicle engines’“boiling”phenomenon under high temperatures and long-time climbing conditions.The simulation results show that changing the radiator’s structure and adjusting the thermostat’s parameters can solve the problem of a“boiling pot.”The optimized new energy vehicle engine can maintain a better operating temperature range.The algorithm model can reference each cryogenic system component hardware selection and control strategy in the new energy vehicle’s engine. 展开更多
关键词 New energy vehicle new energy vehicle engine k-ε turbulent flow mathematical model cooling system PID control
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Numerical prediction of inner turbulent flow in conical diffuser by using a new five-point scheme and DLR k-ε turbulence model 被引量:2
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作者 蒋光彪 何永森 +1 位作者 舒适 肖映雄 《Journal of Central South University》 SCIE EI CAS 2008年第S1期181-186,共6页
The internal turbulent flow in conical diffuser is a very complicated adverse pressure gradient flow.DLR k-ε turbulence model was adopted to study it.The every terms of the Laplace operator in DLR k-ε turbulence mod... The internal turbulent flow in conical diffuser is a very complicated adverse pressure gradient flow.DLR k-ε turbulence model was adopted to study it.The every terms of the Laplace operator in DLR k-ε turbulence model and pressure Poisson equation were discretized by upwind difference scheme.A new full implicit difference scheme of 5-point was constructed by using finite volume method and finite difference method.A large sparse matrix with five diagonals was formed and was stored by three arrays of one dimension in a compressed mode.General iterative methods do not work wel1 with large sparse matrix.With algebraic multigrid method(AMG),linear algebraic system of equations was solved and the precision was set at 10-6.The computation results were compared with the experimental results.The results show that the computation results have a good agreement with the experiment data.The precision of computational results and numerical simulation efficiency are greatly improved. 展开更多
关键词 conical DIFFUSER turbulent flow DLR k-ε turbulence model 5-point scheme ALGEBRAIC MULTIGRID method(AMG)
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Heat Transfer and Flow Characteristics Predictions with a Refined k-ε-f_u Turbulent Model in Impinging Jet 被引量:1
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作者 Qinglin Niu Biao Chen +2 位作者 Zhihong He Jianfei Tong Shikui Dong 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2019年第4期9-17,共9页
Local heat transfer and flow characteristics in a round turbulent impinging jet for Re≈23 000 is predicted numerically with the RANS approach and a k-ε-fu turbulence model. The heat transfer predictions and turbulen... Local heat transfer and flow characteristics in a round turbulent impinging jet for Re≈23 000 is predicted numerically with the RANS approach and a k-ε-fu turbulence model. The heat transfer predictions and turbulence parameters are verified against the axis-symmetric free jet impingement measurements and compared with previous other turbulence models, and results show the k-ε-fu model has a good performance in predictions of the local wall heat transfer coefficient, and in agreement with measurements in mean velocity profiles at different radial positions as well. The numerical model is further used to examine the effect of the fully confined impingement jet on the local Nusselt number. Local Nusselt profiles in x and y-centerlines for the target plate over three separation distances are predicted. Compared with the experimental data, the numerical results are accurate in the central domain around the stagnation region and present a consistent structure distribution. 展开更多
关键词 HEAT TRANSFER IMPINGEMENT flow k-ε-fu turbulENCE model Nusselt NUMBER
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Solution of Self-similar Equations of the k-ε Model in the Shear Turbulent Mixing Problem and Its Numerical Simulation
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作者 Vyacheslav P. Statsenko Yulia V. Tret'yachenko Yury V. Yanilkin 《Journal of Physical Science and Application》 2015年第6期377-395,共19页
The paper presents the k-ε model equations of turbulence with a single set of constants chosen by the authors, which is appropriate to simulate a wide range of turbulent flows. The model validation has been performed... The paper presents the k-ε model equations of turbulence with a single set of constants chosen by the authors, which is appropriate to simulate a wide range of turbulent flows. The model validation has been performed for a number of flows and its main results are given in the paper. The turbulent mixing of flow with shear in the tangential velocity component is discussed in details. An analytical solution to the system of ordinary differential equations of the k-ε model of turbulent mixing has been found for the self-similar regime of flow. The model coefficients were chosen using simulation results for some simplest turbulent flows. The solution can be used for the verification of codes. The numerical simulation of the problem has been performed by the 2D code EGAK using this model. A good agreement of the numerical simulation results with the self-similar solution, 3D DNS results and known experimental data has been achieved. This allows stating that the k-ε model constants chosen by the authors are acceptable for the considered flow. 展开更多
关键词 The k-ε model of turbulent mixing shear turbulent mixing self-similar equations numerical simulation.
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Multi-layer analytic solution for k-ωmodel equations via a symmetry approach
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作者 Fan TANG Weitao BI Zhensu SHE 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第2期289-306,共18页
Despite being one of the oldest and most widely-used turbulence models in engineering computational fluid dynamics(CFD),the k-ωmodel has not been fully understood theoretically because of its high nonlinearity and co... Despite being one of the oldest and most widely-used turbulence models in engineering computational fluid dynamics(CFD),the k-ωmodel has not been fully understood theoretically because of its high nonlinearity and complex model parameter setting.Here,a multi-layer analytic expression is postulated for two lengths(stress and kinetic energy lengths),yielding an analytic solution for the k-ωmodel equations in pipe flow.Approximate local balance equations are analyzed to determine the key parameters in the solution,which are shown to be rather close to the empirically-measured values from the numerical solution of the Wilcox k-ωmodel,and hence the analytic construction is fully validated.The results provide clear evidence that the k-ωmodel sets in it a multilayer structure,which is similar to but different,in some insignificant details,from the Navier-Stokes(N-S)turbulence.This finding explains why the k-ωmodel is so popular,especially in computing the near-wall flow.Finally,the analysis is extended to a newlyrefined k-ωmodel called the structural ensemble dynamics(SED)k-ωmodel,showing that the SED k-ωmodel has improved the multi-layer structure in the outer flow but preserved the setting of the k-ωmodel in the inner region. 展开更多
关键词 turbulence model k-ωmodel structural ensemble dynamics(SED) multilayer structure SYMMETRY
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Assessment of k–ε models using tetrahedral grids to describe the turbulent flow field of a PBT impeller and validation through the PIV technique 被引量:3
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作者 Victor X. Mendoza-Escamilla Alejandro Alonzo-Garcia +3 位作者 Helvio R. Mollinedo Israel Gonzalez-Neria J. Antonio Yanez-Varela Sergio A. Martinez-Delgadillo 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第5期942-956,共15页
In turbulence modeling, the RNG and Realizable models have important improvements in the turbulent production and dissipation terms in comparison to the Standard. The selection of the appropriate turbulence model has ... In turbulence modeling, the RNG and Realizable models have important improvements in the turbulent production and dissipation terms in comparison to the Standard. The selection of the appropriate turbulence model has an impact on the convergence and solution in STRs, and they are used in mixing, multiphase modeling or as starting solution of transient models as DES and LES. Although there are several studies with the pitched blade turbine(PBT) impeller, most of them used the Standard model as representative of all k–ε models, using structured hexahedral grids composed of low number of cells, and in some cases under axial symmetry assumptions.Accordingly, in this work the assessment of the Standard, RNG and Realizable models to describe the turbulent flow field of this impeller, using the Multiple Reference Frame(MRF) and Sliding Mesh(SM) approaches with tetrahedral domains in dense grids, is presented. This kind of cell elements is especially suitable to reproduce complex geometries. Flow velocities and turbulent parameters were verified experimentally by PIV and torque measurements. The three models were capable of predicting fairly the pumping number, the power number based on torque, and velocities. Although the RNG improved the predictions of the turbulent kinetic energy and dissipation rate, the Realizable model presented better performance for both approaches. All models failed in the prediction of the total dissipation rate, and a dependence of its value on the number of cells for the MRF was found. 展开更多
关键词 Tetrahedral grids PIV turbulent flow k-ε models Stirred vessel
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REVISED k-ε TURBULENCE MODEL IN ELECTROMAGNETIC CONTINUOUS CASTING OF MELT 被引量:1
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作者 H.F. Huo and B.K. LiDepartment of Thermal Engineering, School of Materials and Metallurgy, Northeastern University, Shenyang 110004, China. 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2003年第5期395-400,共6页
The research is motivated by the ongoing the electromagnetic continuous casting of molten metal. The revised k-ε model considering the effect of magnetic field application was derived. The specific model equations fo... The research is motivated by the ongoing the electromagnetic continuous casting of molten metal. The revised k-ε model considering the effect of magnetic field application was derived. The specific model equations for the electromagnetic braking were used to calculate the velocity distribution in the continuous casting mold of steel. The results show that the revised k-ε model considering the effect of magnetic field application tends to suppress the production of turbulence and difference between the conventional and revised k-e model is small. 展开更多
关键词 revised k-ε turbulence model electromagnetic continuous casting magnetic field
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Three-dimensional turbulent model of heat transfer and fluid flow in GTAW process 被引量:1
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作者 董志波 徐艳利 +3 位作者 魏艳红 马瑞 王淑娟 翟国富 《China Welding》 EI CAS 2010年第2期23-27,共5页
A two-equation K-ε turbulent fluid flow model is built to model the heat transfer and fluid flow in gas tungsten arc welding (GTAW) process of stainless steel S US310 and S US316. This model combines the buoyancy f... A two-equation K-ε turbulent fluid flow model is built to model the heat transfer and fluid flow in gas tungsten arc welding (GTAW) process of stainless steel S US310 and S US316. This model combines the buoyancy force, lorentz force and marangni force as the driving forces of thefluidflow in the weld pool. The material properties are functions of temperature in this model. The simulated results show that the molten metal flowing outward is mainly caused by the marangoni convection, which makes the weld pool become wider and shallower. The comparison of the weld pool shape of SUS310 and SUS316 shows that the slight differences of the value of thermal conductivity mainly attributes to the difference of the weld pool shape and the distinction of heat transport in laminar and turbulent model makes large diversity in the simulated results. 展开更多
关键词 heat transfer fluid flow GTAW k-ε turbulent fluid flow model
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A K-εTWO-EQUATION TURBULENCE MODEL FOR THE SOLID-LIQUID TWO-PHASE FLOWS  被引量:1
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作者 刘小兵 程良骏 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1996年第6期523-531,共9页
A two-equation turbulence model has been dereloped for predicting two-phase flow the two equations describe the conserration of turbulence kinetic energy and dissipation rate of that energy for the incompressible carr... A two-equation turbulence model has been dereloped for predicting two-phase flow the two equations describe the conserration of turbulence kinetic energy and dissipation rate of that energy for the incompressible carrier fluid in a two-phase flow The continuity, the momentum, K and εequations are modeled. In this model,the solid-liquid slip veloeites, the particle-particte interactions and the interactions between two phases are considered,The sandy water pipe turbulent flows are sueeessfuly predicted by this turbulince model. 展开更多
关键词 solid-liqtlid two-phase. k-εtwo-equation turbulence model
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CURVAURE SENSITIVE NONLINEAR TURBULENCE MODEL
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作者 钱炜祺 符松 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2002年第1期31-41,共11页
By modifying the Rodi assumption to take account of the influence of flow curvature, a new curvature modified algebraic stress model(CMASM) is de- veloped from the second moment closure in the generalized curvilinear ... By modifying the Rodi assumption to take account of the influence of flow curvature, a new curvature modified algebraic stress model(CMASM) is de- veloped from the second moment closure in the generalized curvilinear coordinate system. And the explicit form of this ASM, a new curvature modified nonlinear k-ε model (CMNKE), is derived in the orthogonal curvilinear coordinate system. This new nonlinear k-ε model is further validated by a numerical simulation of a two- dimensional U-type turnaround duct flow. The results show that the CMNKE can effectively capture the main characteristic of this curvature flow and simulate the damping effect of the shear stress by a convex curvature and the enhancing effect by a concave curvature. So, this model is a rational and effective simplification to the second moment closure. 展开更多
关键词 turbulENCE curvature effect algebraic stress model nonlinear k-ε model
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Optimal convergence rates for three-dimensional turbulent flow equations
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作者 边东芬 郭柏灵 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2013年第5期637-656,共20页
In this paper, the convergence turbulent flow equations are considered. By rates of solutions to the three-dimensional combining the LP-Lq estimate for the linearized equations and an elaborate energy method, the conv... In this paper, the convergence turbulent flow equations are considered. By rates of solutions to the three-dimensional combining the LP-Lq estimate for the linearized equations and an elaborate energy method, the convergence rates are obtained in various norms for the solution to the equilibrium state in the whole space when the initial perturbation of the equilibrium state is small in the H3-framework. More precisely, the optimal convergence rates of the solutions and their first-order derivatives in the L2-norm are obtained when the LP-norm of the perturbation is bounded for some p ε [1, 6). 展开更多
关键词 turbulent flow equation k-ε model optimal convergence rate energy estimate
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TWO MODIFICATORY K-ε TURBULENCE MODELS FOR TURBULENT SWIRLING FLOWS 被引量:11
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作者 WangZe LiuWei-ming 《Journal of Hydrodynamics》 SCIE EI CSCD 2003年第2期51-57,共7页
Since the standard K-ε model used to predict the strongly swirling flowleads to a large deviation from experimental results, it is necessary to introduce modification tothe standard K-ε model. Based on the algebraic... Since the standard K-ε model used to predict the strongly swirling flowleads to a large deviation from experimental results, it is necessary to introduce modification tothe standard K-ε model. Based on the algebraic Reynolds stress model and Bradshaw's turbulentlength scale modification conception, we present two modified K-ε models. To investigate thebehaviour of the modified turbulence models, they are used to predict two representative turbulentswirling flows. The computational results, after compared with the experimental data, show that themodified K-ε models substantially improve the prediction of the standard K-ε model for theturbulent swirling flows. 展开更多
关键词 modified k-ε turbulence model turbulent swirling flow gradient richardsonnumber
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A k-ε Turbulence Model Considering Compressibility in Three-Dimensional Transonic Turbulent Flow Calculation 被引量:2
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作者 Guojun LI Zhenping FENG +1 位作者 Moujin ZhANG Liang LI (School of Energy & Power Engineering, Xi’an Jiaotong University, Xi’an 710049, China) 《Journal of Thermal Science》 SCIE EI CAS CSCD 2000年第2期97-102,共6页
Based on the standard k-ε turbulence model, a new compressible k-ε model considering the pressure expansion influence due to the compressibility of fluid is developed and applied to the simulation of 3D transonic tu... Based on the standard k-ε turbulence model, a new compressible k-ε model considering the pressure expansion influence due to the compressibility of fluid is developed and applied to the simulation of 3D transonic turbulent flows in a nozzle and a cascade. The Reynolds avenged N-S equations in generalized curvilinear coordinates are solved with implementation of the new model. The high resolution TVD scheme is used to discretize the convective terms. The numerical results show that the compressible k-ε model behaves well in the simulation of transonic internal turbulent flows. 展开更多
关键词 k-ε turbulence model 3D transonic flows TVD scheme numerical simulation.
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Numerical simulation and experimental verification of plasma jet development in gas gap switch 被引量:1
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作者 董冰冰 郭志远 +2 位作者 张泽霖 文韬 向念文 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第5期159-169,共11页
Plasma jet triggered gas gap switch has obvious advantages in fast control switch.The development of the plasma in the ambient medium is the key factor affecting the triggering conduction of the gas switch.However,the... Plasma jet triggered gas gap switch has obvious advantages in fast control switch.The development of the plasma in the ambient medium is the key factor affecting the triggering conduction of the gas switch.However,the plasma jet process and its characteristic parameters are complicated and the existing test methods cannot fully characterize its development laws.In this work,a two-dimensional transient fluid calculation model of the plasma jet process of the gas gap switch is established based on the renormalization-group k-εturbulence equation.The results show that the characteristic parameters and morphological evolution of the plasma jet are basically consistent with the experimental results,which verifies the accuracy of the simulation model calculation.The plasma jet is a long strip with an initial velocity of 1.0 km·s-1and develops in both axial and radial directions.The jet velocity fluctuates significantly with axial height.As the plasma jet enters the main gap,the pressure inside the trigger cavity drops by80%,resulting in a rapid drop in the jet velocity.When the plasma jet head interacts with the atmosphere,the two-phase fluid compresses each other,generating a forward-propelled pressure wave.The plasma jet heads flow at high velocity,a negative pressure zone is formed in the middle part of the jet,and the pressure peak decreases gradually with height.As the value of the inlet pressure increases,the characteristic parameters of the plasma jet increase.The entrainment phenomenon is evident,which leads to an increase in the pressure imbalance of the atmospheric gas medium,leading to a significant Coanda effect.Compared with air,the characteristic parameters of a plasma jet in SF6are lower,and the morphological evolution is significantly suppressed.The results of this study can provide some insight into the mechanism of action of the switch jet plasma development process. 展开更多
关键词 gas gap switch plasma jet k-εturbulence model numerical calculation experimental verification
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COMPARISON OF K-ε AND K-ω TURBULENCE MODELS FOR SIMULATION OF SHALLOW RECIRCULATING FLOWS IN AN OPEN CHANNEL 被引量:1
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作者 Zhang, Yifan Li, C.W. 《Journal of Hydrodynamics》 SCIE EI CSCD 1998年第2期74-86,共13页
The paper describes the comparison of commonly used k-ε and k-ω turbulence models for simulating the recirculating flows behind a sudden expansion in a straight open channel. The depth-average numerical model and th... The paper describes the comparison of commonly used k-ε and k-ω turbulence models for simulating the recirculating flows behind a sudden expansion in a straight open channel. The depth-average numerical model and the quasi three-dimensional multilayer model are presented respectively. The governing equations are split into three parts in the finite difference approach: advection, dispersion and propagation. Comparison of the results computed with the k-ε and k-ω models shows that the two turbulence models have strong robustness in simulating the reattachment length of the recirculating flows. The computed results are found in good agreement with the measured data. 展开更多
关键词 turbulence k-ω modek k-ε model finite difference channel expansion
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不同湍流模型在列车外流场计算中的比较 被引量:18
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作者 夏超 单希壮 +1 位作者 杨志刚 李启良 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第11期1687-1693,共7页
通过对简化缩比的列车模型在无侧偏角工况下分别进行模型风洞试验和数值模拟,评估了5种常用湍流模型在列车外流场模拟中的计算精度.数值模拟与风洞试验结果的分析对比表明:Realizable(可实现)k-ε在阻力的计算上精度最高,误差最小为2.5%... 通过对简化缩比的列车模型在无侧偏角工况下分别进行模型风洞试验和数值模拟,评估了5种常用湍流模型在列车外流场模拟中的计算精度.数值模拟与风洞试验结果的分析对比表明:Realizable(可实现)k-ε在阻力的计算上精度最高,误差最小为2.5%;SST(剪切应力输运)k-w在升力的计算上更为精确,误差最小为0.5%.Standard(标准)k-w和SST k-w对准二维分离的捕捉与油流显示试验最接近,Realizable k-ε则对三维分离位置的预测更准确. 展开更多
关键词 湍流模型 风洞试验 列车外流场 数值模拟 油流显示
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通海阀内流场的三维数值模拟 被引量:14
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作者 江山 张京伟 +2 位作者 吴崇健 许清 彭文波 《中国舰船研究》 2009年第2期37-41,共5页
通海阀是船舶内部管路系统与外界连接的重要装置,主要用于各管路海水注入和排出的控制和调节,其性能的好坏直接影响全船各系统甚至整个船舶的性能。在实际使用中发现,通海阀噪声振动加速度偏高,对船舶声学性能产生影响。因此,以通海阀... 通海阀是船舶内部管路系统与外界连接的重要装置,主要用于各管路海水注入和排出的控制和调节,其性能的好坏直接影响全船各系统甚至整个船舶的性能。在实际使用中发现,通海阀噪声振动加速度偏高,对船舶声学性能产生影响。因此,以通海阀为研究对象,采用Fluent软件对通海阀在不同的开口度和流量下的内流场进行数值计算,给出通海阀阀腔内的速度场和压力场图。根据该可视化结果分析影响通海阀性能和产生噪声的原因,为通海阀的内流道优化提供理论依据。 展开更多
关键词 通海阀 湍流模型 FLuent软件 流场可视化
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泄爆外流场的可视化 被引量:4
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作者 姜孝海 范宝春 叶经方 《爆炸与冲击》 EI CAS CSCD 北大核心 2005年第1期5-10,共6页
通过实验和数值方法,对泄爆外流场进行了可视化研究。实验中采用YA 16 高速阴影系统,拍摄了泄爆外流场的时序阴影照片。基于K ε湍流模型和漩涡破碎(eddy dissipation)燃烧模型,利用同位网格SIMPLE算法,对泄爆过程进行了数值模拟。根据... 通过实验和数值方法,对泄爆外流场进行了可视化研究。实验中采用YA 16 高速阴影系统,拍摄了泄爆外流场的时序阴影照片。基于K ε湍流模型和漩涡破碎(eddy dissipation)燃烧模型,利用同位网格SIMPLE算法,对泄爆过程进行了数值模拟。根据计算结果,由计算光学获得泄爆外流场的时序计算阴影图。实验阴影图与计算阴影图较一致,都形象地揭示了泄爆后湍流火焰的发展及二次爆炸的产生和变化过程。 展开更多
关键词 爆炸力学 流场可视化 泄爆实验 泄爆外流场 数值模拟 二次爆炸
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抽水蓄能电站调压室阻抗系数的三维数值模拟 被引量:10
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作者 陈方亮 王凯 张羽 《水电能源科学》 2007年第2期57-60,24,共5页
选用适合调压室流动的三维可视化k-ε双方程湍流模型以及考虑边壁粗糙度的壁函数,采用一阶精度及S IM PLE算法,以FLUENT流体计算软件为计算平台,对抽水蓄能电站调压室流场进行了数值模拟。通过对比和分析表明,在分流、合流两种流态下利... 选用适合调压室流动的三维可视化k-ε双方程湍流模型以及考虑边壁粗糙度的壁函数,采用一阶精度及S IM PLE算法,以FLUENT流体计算软件为计算平台,对抽水蓄能电站调压室流场进行了数值模拟。通过对比和分析表明,在分流、合流两种流态下利用计算流体动力学CFD方法计算得到的水头损失系数值与常规物理模型试验得到的结果,在规律和数值上基本吻合,表明计算流体动力学可以应用于抽水蓄能电站调压室的优化设计中。 展开更多
关键词 抽水蓄能电站调压室 可视化湍流模型 水头损失系数 计算流体动力学
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近壁圆柱绕流的壁面积沙现象机理分析 被引量:2
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作者 郭双喜 李万平 赵伟 《水动力学研究与进展(A辑)》 CSCD 北大核心 2006年第5期606-612,共7页
针对近壁圆柱绕流过程中出现的在平板壁面积沙现象用数值模拟方法进行了机理分析。应用标准kε-湍流模型和流函数-涡量法分析了不同间隙比(圆柱与壁面间的距离对圆柱直径之比)下的尾流特性,得到圆柱表面升阻力和平板壁面压强脉动。结合... 针对近壁圆柱绕流过程中出现的在平板壁面积沙现象用数值模拟方法进行了机理分析。应用标准kε-湍流模型和流函数-涡量法分析了不同间隙比(圆柱与壁面间的距离对圆柱直径之比)下的尾流特性,得到圆柱表面升阻力和平板壁面压强脉动。结合流动显示的染色粒子图方法,进行了详细的分析并提出近壁圆柱绕流过程中在圆柱下游平板壁面形成沙粒线的可能机理。 展开更多
关键词 k-ε湍流模型 近壁圆柱绕流 间隙比 积沙线 流动显示
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