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Large deformation simulations of geomaterials using moving particle semi-implicit method 被引量:1
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作者 Shintaro Nohara Hiroshi Suenaga Kunihiko Nakamura 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第6期1122-1132,共11页
Numerical simulation tools are required to describe large deformations of geomaterials for evaluating the risk of geo-disasters. This study focused on moving particle semi-implicit(MPS) method, which is a Lagrangian g... Numerical simulation tools are required to describe large deformations of geomaterials for evaluating the risk of geo-disasters. This study focused on moving particle semi-implicit(MPS) method, which is a Lagrangian gridless particle method, and investigated its performance and stability to simulate large deformation of geomaterials. A calculation method was developed using geomaterials modeled as Bingham fluids to improve the original MPS method and enhance its stability. Two numerical tests showed that results from the improved MPS method was in good agreement with the theoretical value.Furthermore, numerical simulations were calibrated by laboratory experiments. It showed that the simulation results matched well with the experimentally observed free-surface configurations for flowing sand. In addition, the model could generally predict the time-history of the impact force. The MPS method could be a useful tool to evaluate large deformation of geomaterials. 展开更多
关键词 particle method moving particle semi-implicit(MPS) method Large deformation analysis GEOMATERIALS Bingham model
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Implementation of the moving particle semi-implicit method on GPU 被引量:2
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作者 ZHU XiaoSong CHENG Liang +1 位作者 LU Lin TENG Bin 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第3期523-532,共10页
The Moving Particle Semi-implicit (MPS) method performs well in simulating violent free surface flow and hence becomes popular in the area of fluid flow simulation. However, the implementations of searching neighbouri... The Moving Particle Semi-implicit (MPS) method performs well in simulating violent free surface flow and hence becomes popular in the area of fluid flow simulation. However, the implementations of searching neighbouring particles and solving the large sparse matrix equations (Poisson-type equation) are very time-consuming. In order to utilize the tremendous power of parallel computation of Graphics Processing Units (GPU), this study has developed a GPU-based MPS model employing the Compute Unified Device Architecture (CUDA) on NVIDIA GTX 280. The efficient neighbourhood particle searching is done through an indirect method and the Poisson-type pressure equation is solved by the Bi-Conjugate Gradient (BiCG) method. Four different optimization levels for the present general parallel GPU-based MPS model are demonstrated. In addition, the elaborate optimization of GPU code is also discussed. A benchmark problem of dam-breaking flow is simulated using both codes of the present GPU-based MPS and the original CPU-based MPS. The comparisons between them show that the GPU-based MPS model outperforms 26 times the traditional CPU model. 展开更多
关键词 moving particle semi-implicit method (MPS) graphics processing units (GPU) compute unified device architecture (CUDA) neighbouring particle searching free surface flow
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Research on Numerical Wave Tank Based on the Improved Moving-Particle Semi-Implicit Method with Large Eddy Simulation
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作者 余谦 张怀新 孙学尧 《Journal of Shanghai Jiaotong university(Science)》 EI 2014年第2期226-232,共7页
Moving-particle semi-implicit(MPS) method is a new mesh-free numerical method based on Lagrangian particle. In this paper, MPS method is applied to the study on numerical wave tank. For the purpose of simulating numer... Moving-particle semi-implicit(MPS) method is a new mesh-free numerical method based on Lagrangian particle. In this paper, MPS method is applied to the study on numerical wave tank. For the purpose of simulating numerical wave, we combine the MPS method with large eddy simulation(LES) which can simulate the turbulence in the flow. The intense pressure fluctuation is a significant shortcoming in MPS method. So, we improve the original MPS method by using a new pressure Poisson equation to ease the pressure fluctuation. Divergencefree condition representing fluid incompressible is used to calculate pressure smoothly. Then, area-time average technique is used to deal with the calculation. With these improvements, the modified MPS-LES method is applied to the simulation of numerical wave. As a contrast, we also use the original MPS-LES method to simulate the wave in a numerical wave tank. The result shows that the new method is better than the original MPS-LES method. 展开更多
关键词 improved moving-particle semi-implicit(MPS) method large eddy simulation(LES) numerical wave tank wave-making
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Moving particle semi-implicit simulation on the molten Wood's metal downward relocation process 被引量:2
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作者 Anni Nuril Hidayati Abdul Waris +2 位作者 Asril Pramutadi Andi Mustari Dwi Irwanto Nur Asiah Aprianti 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2021年第8期110-121,共12页
In the case of a severe accident involving nuclear reactors,an important aspect that should be considered is the leakage of molten material from the inside of the reactor into the environment.These molten materials da... In the case of a severe accident involving nuclear reactors,an important aspect that should be considered is the leakage of molten material from the inside of the reactor into the environment.These molten materials damage other reactor components,such as electrical tubes,grid plates and core catchers.In this study,the moving particle semi-implicit(MPS)method is adopted and improved to analyze the twodimensional downward relocation process of molten Wood’s metal as a representation of molten material in a nuclear reactor.The molten material impinges the Wood’s metal plate(WMP),which is mounted on a rigid dummy stainless steel in a cylindrical test vessel.The breaching process occurs because of heat transfer between the molten material and WMP.The formed breach areas were in good agreement with the experimental results,and they showed that the molten Wood’s metal spread above the WMP.The solid WMP fraction decreased with time until it reached the termination time of the simulation.The present results show that the MPS method can be applied to simulate and analyze the downward relocation process of molten material in the grid plate of a nuclear reactor. 展开更多
关键词 Heat transfer moving particle semi-implicit Phase change RELOCATION Severe accident
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Comparison of Construction Method for DEM Simulation of Ellipsoidal Particles 被引量:10
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作者 陶贺 钟文琪 金保升 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第7期800-807,共8页
Discrete element model was developed to simulate the ellipsoidal particles moving in the moving bed. Multi-element model was used to describe a ellipsoidal particle, the contact detection algorithm of ellipsoidal part... Discrete element model was developed to simulate the ellipsoidal particles moving in the moving bed. Multi-element model was used to describe a ellipsoidal particle, the contact detection algorithm of ellipsoidal particle was developed, and both contact force and gravity force were considered in the models. The simulation results were validated by our experiment. Three algorithms for representing an ellipsoidal particle were compared in macro and micro aspects. The results show that there exists big difference in the microscopic parameters such as kinetic energy, rotational kinetic energy, deformation, contact force and collision number which leads to the difference of macroscopic parameters. The relative error in the discharge rate and tracer particle position is the largest between 3-tangent-element representation and experimental results. The flow pattern is similar for the 5-element and 3-intersection representations. The only difference is the discharge rate of 5-element representation is larger than the experimental value and that of the 3-intersection representation has the contrary result. Finally the 3-intersection- element reoresentation is chosen in the simulation due to less comouting time than that of the 5-element renresentation. 展开更多
关键词 ellipsoidal particle multi-element model moving bed discrete element model construction method
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Effect of moving baffle on average velocity and mixing of binary particles in rotating drums 被引量:2
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作者 ZHANG Li-dong MA Jie +3 位作者 WANG Zhi-chao QIN Hong BAI Jing-ru WANG Qing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期478-489,共12页
Adding a moving baffle to the drum is a new way to enhance the motion and mixing of particles in rotating drums.To obtain its influence on binary particles,horizontal rotating drums provided with a moving baffle were ... Adding a moving baffle to the drum is a new way to enhance the motion and mixing of particles in rotating drums.To obtain its influence on binary particles,horizontal rotating drums provided with a moving baffle were investigated by discrete element method(DEM).AtΩ=15 r/min,increasing the length of moving baffle can increase the fluctuation amplitude of average particle velocity.AtΩ=60 r/min,the influence of the moving baffle on the average velocity fluctuation tends to be more random.At both rotational speeds,the moving baffle causes the average particle velocity to fluctuate more sharply.The moving baffle can enhance particle mixing.AtΩ=15 r/min,the moving baffle with length ofδ=1/3 can best enhance particle mixing.However,atΩ=60 r/min,only the moving baffle with a specific length(δ=1/4)can enhance mixing.This basic research has a positive reference value for the application of the moving baffle in industry. 展开更多
关键词 discrete element method(DEM) rotating drum moving baffle binary particles
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Simulation of Solid Particle Interactions Including Segregated Lamination by Using MPS Method
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作者 Kyung Sung Kim Moo-Hyun Kim +1 位作者 Hakun Jang Hee Chen Cho 《Computer Modeling in Engineering & Sciences》 SCIE EI 2018年第7期11-29,共19页
A new MPS(Moving Particle Semi-implicit)method is developed to simulate the behaviors and interactions of multiple fine solid particles as a continuum.As fluid particles are affected by viscosity,so solid particles ar... A new MPS(Moving Particle Semi-implicit)method is developed to simulate the behaviors and interactions of multiple fine solid particles as a continuum.As fluid particles are affected by viscosity,so solid particles are affected by friction.The solid particle dynamics for landslides,dumping,and gravity sorting etc.which can be difficult to simulate using conventional MPS methods,are modeled in this paper using the developed multi-solid-particle MPS method that benefits from drawing comparisons with the corresponding fluid particle behaviors.The present MPS results for dumping solid particles are verified against the corresponding DEM(Discrete Element Method)results.The shape and angle of repose for solid particles are shown to be highly dependent on the friction coefficient between grains.The peculiar phenomenon of segregated lamination(gravity sorting)among grains of different densities has been successfully reproduced using the multi-solid-particle MPS method.Lamination quality is found to be dependent on the densities and frictional coefficients of the constituent particles.The behavior of heterogeneous mixtures of multiple solid and liquid particles are also compared and discussed.This newly developed tool offers a window into the physical dynamics of sedimentology that the broader geoscience community might benefit from. 展开更多
关键词 Fine solid particle MPS(moving particle semi-implicit) friction force land sliding DUMPING segregated LAMINATION heterogeneous multiple particles gravity SORTING
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Investigation of Numerical Conditions of Moving Particle Semi‑implicit for Two‑Dimensional Wedge Slamming
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作者 Takahito Iida Yudai Yokoyama 《Journal of Marine Science and Application》 CSCD 2021年第4期585-594,共10页
The sensitivity of moving particle semi-implicit(MPS)simulations to numerical parameters is investigated in this study.Although the verifcation and validation(V&V)are important to ensure accurate numerical results... The sensitivity of moving particle semi-implicit(MPS)simulations to numerical parameters is investigated in this study.Although the verifcation and validation(V&V)are important to ensure accurate numerical results,the MPS has poor perfor-mance in convergences with a time step size.Therefore,users of the MPS need to tune numerical parameters to ft results into benchmarks.However,such tuning parameters are not always valid for other simulations.We propose a practical numerical condition for the MPS simulation of a two-dimensional wedge slamming problem(i.e.,an MPS-slamming condition).The MPS-slamming condition is represented by an MPS-slamming number,which provides the optimum time step size once the MPS-slamming number,slamming velocity,deadrise angle of the wedge,and particle size are decided.The simulation study shows that the MPS results can be characterized by the proposed MPS-slamming condition,and the use of the same MPS-slamming number provides a similar fow. 展开更多
关键词 Wedge slamming moving particle semi-implicit MPS-slamming condition Numerical condition Wagner’s theory Computational fuid dynamics
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Simulation of mould filling process using smoothed particle hydrodynamics 被引量:4
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作者 何毅 周照耀 +1 位作者 曹文炅 陈维平 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第12期2684-2692,共9页
The implementation of high pressure die casting (HPDC) filling process modeling based on smoothed particle hydrodynamics (SPH) was discussed. A new treatment of inlet boundary was established by discriminating flu... The implementation of high pressure die casting (HPDC) filling process modeling based on smoothed particle hydrodynamics (SPH) was discussed. A new treatment of inlet boundary was established by discriminating fluid particles from inlet particles. The roles of artificial viscosity and moving least squares method in the present model were compared in the handling pressure oscillation. The final model was substantiated by simulating filling process in HPDC in both two and three dimensions. The simulated results from SPH and finite difference method (FDM) were compared with the experiments. The results show the former is in a better agreement with experiments. It demonstrates the efficiency and precision of this SPH model in describing flow pattern in filling process. 展开更多
关键词 high pressure die casting (HPDC) smoothed particle hydrodynamics (SPH) filling process moving least squares method
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Two-phase micro-and macro-time scales in particle-laden turbulent channel flows
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作者 Bing Wang Michael Manhart 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第3期595-604,共10页
The micro- and macro-time scales in two-phase turbulent channel flows are investigated using the direct nu- merical simulation and the Lagrangian particle trajectory methods for the fluid- and the particle-phases, res... The micro- and macro-time scales in two-phase turbulent channel flows are investigated using the direct nu- merical simulation and the Lagrangian particle trajectory methods for the fluid- and the particle-phases, respectively. Lagrangian and Eulerian time scales of both phases are cal- culated using velocity correlation functions. Due to flow anisotropy, micro-time scales are not the same with the theo- retical estimations in large Reynolds number (isotropic) tur- bulence. Lagrangian macro-time scales of particle-phase and of fluid-phase seen by particles are both dependent on particle Stokes number. The fluid-phase Lagrangian inte- gral time scales increase with distance from the wall, longer than those time scales seen by particles. The Eulerian inte- gral macro-time scales increase in near-wall regions but de- crease in out-layer regions. The moving Eulerian time scales are also investigated and compared with Lagrangian integral time scales, and in good agreement with previous measure- ments and numerical predictions. For the fluid particles the micro Eulerian time scales are longer than the Lagrangian ones in the near wall regions, while away from the walls the micro Lagrangian time scales are longer. The Lagrangian integral time scales are longer than the Eulerian ones. The results are useful for further understanding two-phase flow physics and especially for constructing accurate prediction models of inertial particle dispersion. 展开更多
关键词 Micro-time scale Lagrangian integral timescale ~ moving Eulerian time scale particle-laden turbulentflow ~ particle Stokes number Direct numerical simulation(DNS) Lagrangian trajectory method
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On the limitations of linear beams for the problems of moving mass-beam interaction using a meshfree method
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作者 Keivan Kiani Ali Nikkhoo 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第1期164-179,共16页
This paper deals with the capabilities of linear and nonlinear beam theories in predicting the dynamic response of an elastically supported thin beam traversed by a moving mass. To this end, the discrete equations of ... This paper deals with the capabilities of linear and nonlinear beam theories in predicting the dynamic response of an elastically supported thin beam traversed by a moving mass. To this end, the discrete equations of motion are developed based on Lagrange's equations via reproducing kernel particle method (RKPM). For a particular case of a simply supported beam, Galerkin method is also employed to verify the results obtained by RKPM, and a reasonably good agreement is achieved. Variations of the maximum dynamic deflection and bending moment associated with the linear and nonlinear beam theories are investigated in terms of moving mass weight and velocity for various beam boundary conditions. It is demonstrated that for majority of the moving mass velocities, the differences between the results of linear and nonlinear analyses become remarkable as the moving mass weight increases, particularly for high levels of moving mass velocity. Except for the cantilever beam, the nonlinear beam theory predicts higher possibility of moving mass separation from the base beam compared to the linear one. Furthermore, the accuracy levels of the linear beam theory are determined for thin beams under large deflections and small rotations as a function of moving mass weight and velocity in various boundary conditions. 展开更多
关键词 Nonlinear beam theory moving mass-beam in- teraction Euler-Bernoulli beam theory - Reproducing kernel particle method (RKPM) Galerkin method (GM)
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A Semi-implicit Finite Volume Scheme for Incompressible Two-Phase Flows
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作者 Davide Ferrari Michael Dumbser 《Communications on Applied Mathematics and Computation》 2024年第4期2295-2330,共36页
This paper presents a mass and momentum conservative semi-implicit finite volume(FV)scheme for complex non-hydrostatic free surface flows,interacting with moving solid obstacles.A simplified incompressible Baer-Nunzia... This paper presents a mass and momentum conservative semi-implicit finite volume(FV)scheme for complex non-hydrostatic free surface flows,interacting with moving solid obstacles.A simplified incompressible Baer-Nunziato type model is considered for two-phase flows containing a liquid phase,a solid phase,and the surrounding void.According to the so-called diffuse interface approach,the different phases and consequently the void are described by means of a scalar volume fraction function for each phase.In our numerical scheme,the dynamics of the liquid phase and the motion of the solid are decoupled.The solid is assumed to be a moving rigid body,whose motion is prescribed.Only after the advection of the solid volume fraction,the dynamics of the liquid phase is considered.As usual in semi-implicit schemes,we employ staggered Cartesian control volumes and treat the nonlinear convective terms explicitly,while the pressure terms are treated implicitly.The non-conservative products arising in the transport equation for the solid volume fraction are treated by a path-conservative approach.The resulting semi-implicit FV discretization of the mass and momentum equations leads to a mildly nonlinear system for the pressure which can be efficiently solved with a nested Newton-type technique.The time step size is only limited by the velocities of the two phases contained in the domain,and not by the gravity wave speed nor by the stiff algebraic relaxation source term,which requires an implicit discretization.The resulting semi-implicit algorithm is first validated on a set of classical incompressible Navier-Stokes test problems and later also adds a fixed and moving solid phase. 展开更多
关键词 Staggered semi-implicit finite volume(FV)method Incompressible two-phase flows Diffuse interface approach Incompressible free-surface Navier-Stokes equations Violent non-hydrostatic flows Fixed and moving solid obstacles
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Hydroelastic responses of an elastic cylinder impacting on the free surface by MPS-FEM coupled method 被引量:4
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作者 Congyi Huang Guanyu Zhang Decheng Wan 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第11期67-78,共12页
In naval engineering and offshore industry,the fluid-structure interaction(FSI)problem is a very common problem,and water entry is a very representative one.The hydroelasticity effects due to slamming are of great int... In naval engineering and offshore industry,the fluid-structure interaction(FSI)problem is a very common problem,and water entry is a very representative one.The hydroelasticity effects due to slamming are of great interest.In this paper,the water entry problem is simulated by the moving particle semi-implicit&finite element method(MPS-FEM)coupled method.The MPS method is used for the fluid because it is very suitable for the violent free-surface flow.The structure domain is solved by the FEM method because of the maturity in solving structural motion and deformation.The water entry of a rigid cylinder is numerically studied first and the results show good agreements with previous published data.After that,variable analysis is conducted in the water entry simulation of an elastic cylinder,including the structural elasticity and impact velocity. 展开更多
关键词 moving particle semi-implicit method Finite element method Fluid-structure interaction Water entry MPSFSI solver
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Numerical Simulation of Sloshing with Large Deforming Free Surface by MPS-LES Method 被引量:4
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作者 潘徐杰 张怀新 孙学尧 《China Ocean Engineering》 SCIE EI 2012年第4期653-668,共16页
Moving particle semi-implicit (MPS) method is a fully Lagrangian particle method which can easily solve problems with violent free surface. Although it has demonstrated its advantage in ocean engineering application... Moving particle semi-implicit (MPS) method is a fully Lagrangian particle method which can easily solve problems with violent free surface. Although it has demonstrated its advantage in ocean engineering applications, it still has some defects to be improved. In this paper, MPS method is extended to the large eddy simulation (LES) by coupling with a sub-particle-scale (SPS) turbulence model. The SPS turbulence model turns into the Reynolds stress terms in the filtered momentum equation, and the Smagorinsky model is introduced to describe the Reynolds stress terms. Although MPS method has the advantage in the simulation of the free surface flow, a lot of non-free surface particles are treated as free surface particles in the original MPS model. In this paper, we use a new free surface tracing method and the key point is "neighbor particle". In this new method, the zone around each particle is divided into eight parts, and the particle will be treated as a free surface particle as long as there are no "neighbor particles" in any two parts of the zone. As the number density parameter judging method has a high efficiency for the free surface particles tracing, we combine it with the neighbor detected method. First, we select out the particles which may be mistreated with high probabilities by using the number density parameter judging method. And then we deal with these particles with the neighbor detected method. By doing this, the new mixed free surface tracing method can reduce the mistreatment problem efficiently. The serious pressure fluctuation is an obvious defect in MPS method, and therefore an area-time average technique is used in this paper to remove the pressure fluctuation with a quite good result. With these improvements, the modified MPS-LES method is applied to simulate liquid sloshing problems with large deforming free surface. Results show that the modified MPS-LES method can simulate the large deforming free surface easily. It can not only capture the large impact pressure accurately on rolling tank wall but also can generate all physical phenomena successfully. The good agreement between numerical and experimental results proves that the modified MPS-LES method is a good CFD methodology in free surface flow simulations. 展开更多
关键词 liquid sloshing large deforming free surface MESHLESS moving particle semi-implicit method (MPS) largeeddy simulation (LES)
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Numerical Simulation of Sloshing Using the MPS-FSI Method with Large Eddy Simulation 被引量:2
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作者 YANG Chao ZHANG Huai-xin +1 位作者 SU Hui-lin SHEN Zhong-xiang 《China Ocean Engineering》 SCIE EI CSCD 2018年第3期278-287,共10页
A numerical model has been developed to study sloshing of turbulent flow in a tank with elastic baffles. The Moving-Particle Semi-implicit method(MPS) is a kind of meshless Lagrangian calculation method. The large edd... A numerical model has been developed to study sloshing of turbulent flow in a tank with elastic baffles. The Moving-Particle Semi-implicit method(MPS) is a kind of meshless Lagrangian calculation method. The large eddy simulation(LES) approach is employed to model the turbulence by using the Smagorinsky Sub-Particle Scale(SPS)closure model. This paper uses MPS-FSI method with LES to simulate the interaction between free surface flow and a thin elastic baffle in sloshing. Then, the numerical model is validated, and the numerical solution has good agreement with experimental data for sloshing in a tank with elastic baffles. Furthermore, under external excitations,the MPS is applied to viscous laminar flow and turbulent flow, with both the deformation of elastic baffles and the wave height of the free surface are compared with each other. Besides, the impact pressure with/without baffles and wave height of free surface are investigated and discussed in detail. Finally, preliminary simulations are carried out in the damage problem of elastic baffles, taking the advantage of the MPS-FSI method in computations of the fluid–structure interaction with large deformation. 展开更多
关键词 moving particle semi-implicit method(MPS) fluid–structure interaction(FSI) large eddy simulation(LES) MESHLESS SLOSHING
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相对浸润性对双元液滴碰撞影响的数值研究
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作者 张艺凡 孙一颉 +1 位作者 孙中国 席光 《西安交通大学学报》 北大核心 2025年第11期115-124,共10页
为了阐明液滴间的相对浸润性对液滴碰撞现象及过程的影响,采用无网格移动粒子半隐式(MPS)方法,建立了不同相对浸润性下的表面张力模型。在传统表面自由能模型的基础上,采用流体间宏观接触角拟合两相流体在界面处的分子间势能,实现不同... 为了阐明液滴间的相对浸润性对液滴碰撞现象及过程的影响,采用无网格移动粒子半隐式(MPS)方法,建立了不同相对浸润性下的表面张力模型。在传统表面自由能模型的基础上,采用流体间宏观接触角拟合两相流体在界面处的分子间势能,实现不同浸润性下双元液滴碰撞与融合过程的仿真。通过大量数值计算,分析了双元液滴碰撞与融合的机理,根据韦伯数和碰撞参数划分了双元液滴碰撞的聚并、破碎和拉伸分离区域,研究了流体的相对浸润性对双元液滴碰撞形态及结果的影响。结果表明:相对浸润性对碰撞机理图的影响十分明显,在相对浸润角从0°增加至120°的过程中,拉伸分离-融合分界线随相对浸润角增加向低韦伯数方向单调偏移;在相对浸润角从0°增加至60°时,融合-破碎分界线向低韦伯数方向偏移,相对浸润角继续增加至120°时,分界线又向高韦伯数方向回移。该结论为实际工程中液滴碰撞与融合过程的研究提供了相关理论依据。 展开更多
关键词 浸润性 表面张力 移动粒子半隐式方法 液滴
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改进粒子法在钠冷快堆熔融物水力学破碎行为中的数值模拟
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作者 王文鹏 张斌 +2 位作者 曹胜 任前永 单建强 《西安交通大学学报》 北大核心 2025年第4期128-138,共11页
为了进一步研究钠冷快堆堆芯熔融物水力学射流破碎过程中的关键影响因素,深入分析熔融物射流破碎形态、穿透深度和破碎机理,基于改进最小二乘移动粒子半隐式方法,对熔融物射流在冷却剂钠中的破碎行为进行了模拟。首先,通过将模拟结果与... 为了进一步研究钠冷快堆堆芯熔融物水力学射流破碎过程中的关键影响因素,深入分析熔融物射流破碎形态、穿透深度和破碎机理,基于改进最小二乘移动粒子半隐式方法,对熔融物射流在冷却剂钠中的破碎行为进行了模拟。首先,通过将模拟结果与已有实验数据对比,验证了该方法的适用性和可靠性;其次,将该方法应用于研究金属熔融物与冷却剂钠之间的相互作用,对熔融物射流的破碎过程进行了数值模拟,得到了大量数值实验结果;最后,基于模拟实验结果,发现在低Weber数下,射流前端瑞利-泰勒不稳定性主导破碎,在高低Weber数下,射流破碎主要是由射流侧表面上开尔文-亥姆霍兹不稳定引发的波状剥离机制驱动,分析了射流直径和射流初始速度等参数对射流破碎长度的影响,拟合出针对冷却剂钠的破碎长度关联式,并与实验值和其他模型结果进行了验证,误差控制在±30%以内,从而建立了新的射流破碎模型。研究工作可为钠冷快堆压力容器改进设计提供参考,同时,对于评价钠冷快堆堆芯熔融物射流对反应堆压力容器的潜在影响具有重要意义。 展开更多
关键词 钠冷快堆 射流破碎长度 最小二乘移动粒子半隐式法
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孤立波生成问题的MPS数值模拟
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作者 李梦诗 王国玉 李春辉 《水利水电科技进展》 北大核心 2025年第3期48-54,85,共8页
基于移动粒子半隐式方法(MPS),提出了一种求解流体与刚体结构物相互作用的等效动量传递法,并以水位差法和箱体落水法为例对孤立波生成问题进行了数值模拟。该方法将结构物离散为刚体粒子群,它们由相应的“流体”粒子群替代,在完成全域... 基于移动粒子半隐式方法(MPS),提出了一种求解流体与刚体结构物相互作用的等效动量传递法,并以水位差法和箱体落水法为例对孤立波生成问题进行了数值模拟。该方法将结构物离散为刚体粒子群,它们由相应的“流体”粒子群替代,在完成全域内单一密度流体动量方程的求解后,将这部分“流体”粒子群所获得的动量传递给相应的刚体粒子群,并恢复刚体的初始几何构型,从而实现流体与结构物的动力学耦合。数值模拟结果表明,该方法模拟得到的孤立波生成过程中结构物附近流场变化、波面传播以及结构物运动等信息均与物理模型试验结果吻合良好;与箱体落水法相比,水位差法生成的孤立波的波高较大,波速较快,但生成稳定孤立波所需的时间较长。 展开更多
关键词 孤立波 移动粒子半隐式方法 等效动量传递 流固耦合
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基于移动粒子半隐式方法的非充满折流板双螺杆流道内混合
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作者 董沛洲 喻慧文 +2 位作者 谈灵操 徐百平 杨芳 《化工学报》 北大核心 2025年第1期198-207,共10页
为提升传统双螺杆的混合能力,提出一种新型折流板双螺杆,独特的折流板结构可作用于物料的混合,但非充满状态下的流动和混合特性尚不明确。采用移动粒子半隐式方法(MPS)求解了黏性流体非充满输送状态下的两相界面,基于自主研制的全程可... 为提升传统双螺杆的混合能力,提出一种新型折流板双螺杆,独特的折流板结构可作用于物料的混合,但非充满状态下的流动和混合特性尚不明确。采用移动粒子半隐式方法(MPS)求解了黏性流体非充满输送状态下的两相界面,基于自主研制的全程可视化折流板挤出装备进行非充满输送实验。求解了黏性流体在非充满状态下的速度和压力分布,结合自编程序计算了粒子欧氏距离及有限时间的Lyapunov指数,表征折流板双螺杆的分布混合。结果表明数值模拟自由界面与实验结果保持一致,验证了半隐式方法求解的有效性。粒子示踪结果显示传统双螺杆远离啮合区存在明显的粒子聚并区域及较小平均有限时间的Lyapunov指数。而相对传统双螺杆,折流板双螺杆内欧氏距离和有限时间的Lyapunov指数的平均值较大,分布混合能力优于传统双螺杆。 展开更多
关键词 折流板双螺杆 移动粒子半隐式方法 非牛顿流体 欧氏距离 混合 粒子图像测速
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内置翼型挡板减速器搅油损失研究
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作者 祁文杰 周政 张洪灵 《重庆理工大学学报(自然科学)》 北大核心 2025年第9期78-84,共7页
为提高汽车传动系统效率,减少齿轮副搅油过程中油滴重复搅动导致的搅油损失,以一种新型内置翼型挡板减速器为研究对象,运用移动粒子半隐式法建立了内置翼型挡板减速器搅油损失数值仿真模型,对比分析了内置常规挡板和4种内置翼型挡板结... 为提高汽车传动系统效率,减少齿轮副搅油过程中油滴重复搅动导致的搅油损失,以一种新型内置翼型挡板减速器为研究对象,运用移动粒子半隐式法建立了内置翼型挡板减速器搅油损失数值仿真模型,对比分析了内置常规挡板和4种内置翼型挡板结构油液分布状态与搅油损失,进一步考察了转速对其搅油损失的影响规律。结果表明:模型Ⅴ可有效减少油滴的重复搅动,箱体内部油液分布状态最好,搅油损失最低,与基础减速器模型相比,搅油损失降低24%;随着齿轮转速的增加,内置翼型挡板结构对搅油损失的降低效果更加显著。该研究为减速器箱体设计提供了一种新的思路。 展开更多
关键词 搅油损失 翼型挡板 移动粒子半隐式法 油液流场分布
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