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Nonlinear finite element analysis of effect of seismic waves on dynamic response of Shiziping dam 被引量:7
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作者 DING Xuan-ming LIU Han-long +1 位作者 YU Tao KONG Gang-qiang 《Journal of Central South University》 SCIE EI CAS 2013年第8期2323-2332,共10页
Many high earth-rockfill dams are constructed in the west of China. The seismic intensity at the dam site is usually very high, thus it is of great importance to ensure the safety of the dam in meizoseismal area. A 3D... Many high earth-rockfill dams are constructed in the west of China. The seismic intensity at the dam site is usually very high, thus it is of great importance to ensure the safety of the dam in meizoseismal area. A 3D FEM model is established to analyze the seismic responses of Shiziping earth-rockfill dam. The nonlinear elastic Duncan-Chang constitutive model and the equivalent viscoelastic constitutive model are used to simulate the static and dynamic stress strain relationships of the dam materials, respectively. Four groups of seismic waves are inputted from the top of the bedrock to analyze the dynamic responses of the dam. The numerical results show that the calculated dynamic magnification factors display a good consistency with the specification values. The site spectrum results in larger acceleration response than the specification spectrum. The analysis of relative dynamic displacement indicates that the displacement at the downstream side of the dam is larger than that at the upstream side. The displacement response reduces from the center of river valley to two banks. The displacement responses corresponding to the specification spectrum are a little smaller than those corresponding to the site spectrum. The analysis of shear stress indicates that a large shear stress area appears in the upstream overburden layer, where the shear stress caused by site waves is larger than that caused by specification waves. The analysis of dynamic principal stress indicates that the minimum dynamic stresses in corridor caused by specification and site waves have little difference. The maximum and minimum dynamic stresses are relatively large at two sides. The largest tensile stress occurs at two sides of the floor of grouting corridor, which may result in the crack near the corridor side. The numerical results present good consistency with the observation data of the grouting corridor in Wenchuan earthquake. 展开更多
关键词 finite element method earth-rockfill dam dynamic response acceleration response seismic wave
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Simulation of isothermal precision extrusion of NiTi shape memory alloy pipe coupling by combining finite element method with cellular automaton 被引量:3
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作者 ZHANG Yan-qiu JIANG Shu-yong +1 位作者 ZHAO Ya-nan ZHU Xiao-ming 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第3期506-514,共9页
In order to present the microstructures of dynamic recrystallization(DRX) in different deformation zones of hot extruded NiTi shape memory alloy(SMA) pipe coupling,a simulation approach combining finite element method... In order to present the microstructures of dynamic recrystallization(DRX) in different deformation zones of hot extruded NiTi shape memory alloy(SMA) pipe coupling,a simulation approach combining finite element method(FEM) with cellular automaton(CA) was developed and the relationship between the macroscopic field variables and the microscopic internal variables was established.The results show that there exists a great distinction among the microstructures in different zones of pipe coupling because deformation histories of these regions are diverse.Large plastic deformation may result in fine recrystallized grains,whereas the recrystallized grains may grow very substantially if there is a rigid translation during the deformation,even if the final plastic strain is very large.As a consequence,the deformation history has a significant influence on the evolution path of the DRX as well as the final microstructures of the DRX,including the morphology,the mean grain size and the recrystallization fraction. 展开更多
关键词 shape memory alloy dynamic recrystallization cellular automaton finite element method EXTRUSION
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Determination of penetration depth at high velocity impact using finite element method and artificial neural network tools 被引量:4
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作者 Nam?k KILI? Blent EKICI Selim HARTOMACIOG LU 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2015年第2期110-122,共13页
Determination of ballistic performance of an armor solution is a complicated task and evolved significantly with the application of finite element methods(FEM) in this research field.The traditional armor design studi... Determination of ballistic performance of an armor solution is a complicated task and evolved significantly with the application of finite element methods(FEM) in this research field.The traditional armor design studies performed with FEM requires sophisticated procedures and intensive computational effort,therefore simpler and accurate numerical approaches are always worthwhile to decrease armor development time.This study aims to apply a hybrid method using FEM simulation and artificial neural network(ANN) analysis to approximate ballistic limit thickness for armor steels.To achieve this objective,a predictive model based on the artificial neural networks is developed to determine ballistic resistance of high hardness armor steels against 7.62 mm armor piercing ammunition.In this methodology,the FEM simulations are used to create training cases for Multilayer Perceptron(MLP) three layer networks.In order to validate FE simulation methodology,ballistic shot tests on 20 mm thickness target were performed according to standard Stanag 4569.Afterwards,the successfully trained ANN(s) is used to predict the ballistic limit thickness of 500 HB high hardness steel armor.Results show that even with limited number of data,FEM-ANN approach can be used to predict ballistic penetration depth with adequate accuracy. 展开更多
关键词 人工神经网络 有限元法 穿透深度 性能测定 高速冲击 有限元模拟 fem模拟 工具
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Three Dimension Rigid-plastic Finite Element Simulation for Two-Roll Cross-wedge Rolling Process 被引量:7
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作者 FANG Gang, LEI Li-ping, ZENG Pan (Dept. of Mechanical Engineering, Tsinghua University, Beijing 100084, China) 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期165-,共1页
Cross-wedge rolling (CWR) is a metal process of ro ta ry forming. To produce a part, one cylindrical billet should be placed between t wo counterrotating and wedge-shape dies, which move tangentially relative each oth... Cross-wedge rolling (CWR) is a metal process of ro ta ry forming. To produce a part, one cylindrical billet should be placed between t wo counterrotating and wedge-shape dies, which move tangentially relative each other. The billet suffers plastic deformation (essentially, localized compressio n) during its rotation between the rotating dies. Compared to other numerical si mulation methods, the finite element method (FEM) has advantages in solving gene ral problems with complex shapes of the formed parts. In cross-wedge rolling, t here are four stages in the workpiece deformation process, namely knifing, guidi ng, stretching and sizing stage. It is time-consuming and expensive to design t he CWR process by trial and error method. The application of numerical simul ation for the CWR process will help engineers to efficiently improve the process development. Tselikov, Hayama, Jain and Kobayashi, and Higashimo applied the sl ip-line theory in study of CWR process analysis. Zb.pater studied CWR process i ncluding upsetting by upper-bound method. The above numerical simulation were b ased on the two-dimensional plain-strain assumption ignored the metal flow in workpiece axial direction. Therefore, the complex three-dimensional stress and deformation involved in CWR processes were not presented. Compared to other nume rical simulation methods, the finite element method (FEM) has advantages in solv ing general problems with complex shapes of the formed parts. As yet, a few 3-D finite element simulation studies on CWR process have been reported in literatu res. In this paper, the process of cross wedge rolling (CWR) has been simulated and analyzed by 3D rigid-plastic finite element method. Considering the charact eristic of CWR, the static implicit FEM program is selected. The models proposed in this study uses the commercial code DEFORM 3D to simulate the CWR process. T his is an implicit Lagrangian finite element code, which includes many new enhan cements functions. A new method of utilizing multiple processors using the MPI s tandard has been implemented. Automatic switching between the two different defo rmation solvers (Sparse Solver and Conjugate Gradient Solver) has also been impl emented in order to increase the speed of simulations. In this paper, all stages in CWR process are simulated to be able to closely understand and analyze the a ctual CWR process. For simulating all forming stages in CWR process, the dynam ic adaptive remeshing technology for tetrahedral solid elements was applied. T he stress distributions in cross section of forming workpiece are analyzed to in terpret fracture or rarefaction in the center of workpiece. Authors also analyze d the time-torque curve and the laws of load changing. 展开更多
关键词 cross wedge rolling (CWR) plastic forming finit e element method (fem)
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Numerical simulation of tire/soil interaction using a verified 3D finite element model 被引量:6
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作者 Namjoo Moslem Golbakhshi Hossein 《Journal of Central South University》 SCIE EI CAS 2014年第2期817-821,共5页
The compaction and stress generation on terrain were always investigated based on empirical approaches or testing methods for tire/soil interaction.However,the analysis should be performed for various tires and at dif... The compaction and stress generation on terrain were always investigated based on empirical approaches or testing methods for tire/soil interaction.However,the analysis should be performed for various tires and at different soil strengths.With the increasing capacity of numerical computers and simulation software,finite element modeling of tire/terrain interaction seems a good approach for predicting the effect of change on the parameters.In this work,an elaborated 3D model fully complianning with the geometry of radial tire 115/60R13 was established,using commercial code Solidwork Simulation.The hyper-elastic and incompressible rubber as tire main material was analyzed by Moony-Rivlin model.The Drucker-Prager yield criterion was used to model the soil compaction.Results show that the model realistically predicts the laboratory tests outputs of the modeled tire on the soft soil. 展开更多
关键词 tire/soil interaction finite element method(fem) soil compaction stress distribution inflation pressure
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FEM modeling for 3D dynamic analysis of deep-ocean mining pipeline and its experimental verification 被引量:5
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作者 王刚 刘少军 李力 《Journal of Central South University of Technology》 EI 2007年第6期808-813,共6页
3D dynamic analysis models of 1000 m deep-ocean mining pipeline, including steel lift pipe, pump, buffer and flexible hose, were established by finite element method (FEM). The coupling effect of steel lift pipe and f... 3D dynamic analysis models of 1000 m deep-ocean mining pipeline, including steel lift pipe, pump, buffer and flexible hose, were established by finite element method (FEM). The coupling effect of steel lift pipe and flexible hose, and main external loads of pipeline were considered in the models, such as gravity, buoyancy, hydrodynamic forces, internal and external fluid pressures, concentrated suspension buoyancy on the flexible hose, torsional moment and axial force induced by pump working. Some relevant FEM models and solution techniques were developed, according to various 3D transient behaviors of integrated deep-ocean mining pipeline, including towing motions of track-keeping operation and launch process of pipeline. Meanwhile, an experimental verification system in towing water tank that had similar characteristics of designed mining pipeline was developed to verify the accuracy of the FEM models and dynamic simulation. The experiment results show that the experimental records and simulation results of stress of pipe are coincided. Based on the further simulations of 1 000 m deep-ocean mining pipeline, the simulation results show that, to form configuration of a saddle shape, the total concentrated suspension buoyancy of flexible hose should be 95%?105% of the gravity of flexible hose in water, the first suspension point occupies 1/3 of the total buoyancy, and the second suspension point occupies 2/3 of the total buoyancy. When towing velocity of mining system is less than 0.5 m/s, the towing track of buffer is coincided with the setting route of ship on the whole and the configuration of flexible hose is also kept well. 展开更多
关键词 deep-ocean mining pipeline modeling dynamic analysis finite element method
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基于SPH-DEM-FEM方法的高位滑坡冲击框架建筑群损毁机制研究
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作者 樊晓一 邓鑫 +3 位作者 刘欢 夏贵平 宋嘉麒 杨居颐 《振动与冲击》 北大核心 2025年第15期235-248,288,共15页
高位滑坡对建筑集群的冲击破坏时常导致严重的人员伤亡,基于光滑粒子流体动力学-离散元法-有限元法(smoothed particle hydrodynamics-discrete element method-finite element method,SPH-DEM-FEM)耦合的数值模型,开展了高位滑坡对框... 高位滑坡对建筑集群的冲击破坏时常导致严重的人员伤亡,基于光滑粒子流体动力学-离散元法-有限元法(smoothed particle hydrodynamics-discrete element method-finite element method,SPH-DEM-FEM)耦合的数值模型,开展了高位滑坡对框架结构建筑群的冲击过程、建筑结构破坏机理、冲击力时程与框架柱关键点应力和弯矩等动力机制研究。研究结果表明:SPH-DEM-FEM耦合数值方法能够有效地模拟碎石土滑坡中土(SPH)石(DEM)混合物的抛射弹跳、爬高绕流冲击运动过程。考虑了常规建筑垂直、平行于滑坡流向的三排建筑组合布局,位于滑坡近端的纵向排列建筑表现为连续性倾倒破坏,横向排列的建筑则呈现整体倾倒破坏;因前排建筑群对滑坡冲击能量的耗散及滑坡自身摩擦耗能,位于滑坡后端建筑表现为引流面墙体和前排柱发生局部破坏,结构保持稳定,损毁程度依次为上游无建筑缓冲耗能的建筑>有横向排列的建筑>有纵向排列的建筑;纵向、横向排列的建筑冲击力衰减幅度分别31%、21%。横向框架建筑整体倾倒的损毁机制表现为框架柱的直接剪断或节点塑形铰链失效;纵向框架建筑连续性倾倒的损毁机制表现为前排框架柱的失效引起后排框架柱轴向压力和极限弯矩增加,持续冲击荷载超过其极限弯矩致使后排框架柱发生弯曲破坏,最终结构倾倒。系统能量在动能、内能和摩擦耗能间转化,其中摩擦耗能占65.5%,结构耗能占23.6%,动能快速下降与内能急剧增加是建筑破坏的关键特征。 展开更多
关键词 光滑粒子流体动力学-离散元法-有限元法-(SPH-DEM-fem) 高位滑坡 框架结构建筑群 损毁机制 动力机制
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基于CFD-FEM耦合方法的冰柱碰撞响应研究
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作者 宋英龙 杨博睿 +3 位作者 赵禹 杨碧野 郑瑜娜 张桂勇 《振动与冲击》 北大核心 2025年第15期67-74,共8页
碰撞冰载荷是影响极地海洋结构物作业安全的重要因素。基于CFD(computational fluid dynamics)软件STAR-CCM+和FEM软件Abaqus协同仿真,构建了计算结构物-浮冰-水相互作用的数值模型,开展了圆柱形结构物与方形浮冰的碰撞响应研究并分析... 碰撞冰载荷是影响极地海洋结构物作业安全的重要因素。基于CFD(computational fluid dynamics)软件STAR-CCM+和FEM软件Abaqus协同仿真,构建了计算结构物-浮冰-水相互作用的数值模型,开展了圆柱形结构物与方形浮冰的碰撞响应研究并分析了不同因素对碰撞响应的影响。进一步从能量转换的角度,提出了一种考虑浮冰初始旋转的碰撞力修正模型。分析了碰撞前、碰撞中和碰撞后阶段对碰撞力峰值的影响,实现了对带有初始旋转的浮冰碰撞载荷的快速估算。研究发现,碰撞前浮冰速度衰减、碰撞持续时间和碰撞后浮冰的转动对碰撞力均有较大影响,碰撞力随浮冰旋转角度增大呈现出先增大后减小的变化趋势。 展开更多
关键词 CFD-fem耦合 协同仿真 浮冰 结构物 碰撞响应
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Simulation Research of Fault Model of Detecting Rotor Dynamic Eccentricity in Brushless DC Motor Based on Motor Current Signature Analysis 被引量:12
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作者 赵向阳 葛文韬 《中国电机工程学报》 EI CSCD 北大核心 2011年第36期I0011-I0011,共1页
基于Ansoft/Maxwell设置动态偏心故障,建立求解电机电感和磁链的有限元模型,通过仿真,证明了将感应电机动态偏心故障的特征频率经过简化后,同样适用于无刷直流电动机。基于Ansoft/Simplorer建立无刷直流电动机系统的仿真模型。在... 基于Ansoft/Maxwell设置动态偏心故障,建立求解电机电感和磁链的有限元模型,通过仿真,证明了将感应电机动态偏心故障的特征频率经过简化后,同样适用于无刷直流电动机。基于Ansoft/Simplorer建立无刷直流电动机系统的仿真模型。在电机稳态运行下,对定子电流进行傅里叶分析,研究并建立基于定子电流监测动态偏心故障的仿真模型:动态偏心故障与特征频率的关系、动态偏心故障程度与特征频率幅值的关系。进而研究了无刷直流电动机稳态运行时转速波动对偏心故障监测的影响。仿真结果表明,转子偏心程度加大,特征频率的幅值增加。 展开更多
关键词 电机转子 故障检测 电流特征 偏心 直流 仿真 模型 机械故障
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Impacts of flexible obstructive working environment on dynamic performances of inspection robot for power transmission line 被引量:7
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作者 肖晓晖 吴功平 +1 位作者 杜娥 李三平 《Journal of Central South University of Technology》 2008年第6期869-876,共8页
The rigid-flexible coupling dynamic modeling and simulation of an inspection robot were conducted to study the influences of the flexible obstructive working environment i.e. overhead transmission line on the robot's... The rigid-flexible coupling dynamic modeling and simulation of an inspection robot were conducted to study the influences of the flexible obstructive working environment i.e. overhead transmission line on the robot's dynamic performance. First, considering the structure of the obstacles and symmetrical mechanism of the robot prototype, four basic subactions were abstracted to fulfill full-path kinematic tasks. Then, a multi-rigid-body dynamic model of the robot was built with Lagrange equation, whil^e a multi-flexible-body dynamic model of a span of lin~ was obtained by combining finite element method (FEM), modal synthesis method and Lagrange equation. The two subsystem models were coupled under rolling along no-obstacle segment and overcoming obstacle poses, and these simulations of three subactions along different spans of line were performed in ADMAS. The simulation results, including the coupling vibration parameters and driving moment of joint motors, show the dynamic performances of the robot along ftexibile obstructive working path: in flexible obstructive working environment, the robot can fulfill the preset motion goals; it responses slower in more flexible path; the fluctuation of robot as well as driving moment of the corresponding joint in startup and brake region is greater than that in rigid environment; the fluctuation amplitude increases with increasing working environment flexibility. 展开更多
关键词 inspection robot transmission line OBSTRUCTION rigid-flexible coupling dynamics finite element method simulation
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Dynamic probabilistic analysis of stress and deformation for bladed disk assemblies of aeroengine 被引量:3
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作者 白斌 白广忱 《Journal of Central South University》 SCIE EI CAS 2014年第10期3722-3735,共14页
In order to describe and control the stress distribution and total deformation of bladed disk assemblies used in the aeroengine, a highly efficient and precise method of probabilistic analysis which is called extremum... In order to describe and control the stress distribution and total deformation of bladed disk assemblies used in the aeroengine, a highly efficient and precise method of probabilistic analysis which is called extremum response surface method(ERSM) is produced based on the previous deterministic analysis results with the finite element model(FEM). In this work, many key nonlinear factors, such as the dynamic feature of the temperature load, the centrifugal force and the boundary conditions, are taken into consideration for the model. The changing patterns with time of bladed disk assemblies about stress distribution and total deformation are obtained during the deterministic analysis, and at the same time, the largest deformation and stress nodes of bladed disk assemblies are found and taken as input target of probabilistic analysis in a scientific and reasonable way. Not only their reliability, historical sample, extreme response surface(ERS) and the cumulative probability distribution function but also their sensitivity and effect probability are obtained. Main factors affecting stress distribution and total deformation of bladed disk assemblies are investigated through the sensitivity analysis of the model. Finally, compared with the response surface method(RSM) and the Monte Carlo simulation(MCS), the results show that this new approach is effective. 展开更多
关键词 bladed disk assemblies probabilistic analysis finite element model extremum response surface method sensitivity analysis transient dynamic analysis
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Dynamics of vertical pipe in deep-ocean mining system 被引量:3
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作者 禹宏云 刘少军 《Journal of Central South University of Technology》 EI 2007年第4期552-556,共5页
A 3-D geometrical nonlinear model for the entire lift system of 1000-m sea trial system of China Ocean Mineral Resources R&D Association was established with finite element method.The model was utilized to analyze... A 3-D geometrical nonlinear model for the entire lift system of 1000-m sea trial system of China Ocean Mineral Resources R&D Association was established with finite element method.The model was utilized to analyze the dynamic characteristics of the vertical pipe under the influence of moving velocity,current direction and wave.The simulation results show that the axial stress is dominant on the vertical pipe,its maximum is located at the pipe top,all stresses are much less than the allowable value of the vertical pipe and joint;the heave motion leads to violent fluctuation of the force and stress,but a period of 8 s is not likely to resonate the present pipe;against the current,0.50 m/s is the suggested moving velocity of the ship and miner,while along the current,the moving velocity can be slightly higher than 0.75 m/s. 展开更多
关键词 deep-ocean mining dynamicS vertical pipe finite element method geometrical nonlinearity
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Dynamic analysis and modal test of long-span cable-stayed bridge based on ambient excitation 被引量:3
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作者 陈常松 颜东煌 《Journal of Central South University of Technology》 EI 2007年第1期135-139,共5页
To study the stiffness distribution of girder and the method to identify modal parameters of cable-stayed bridge, a simplified dynamical finite element method model named three beams model was established for the gird... To study the stiffness distribution of girder and the method to identify modal parameters of cable-stayed bridge, a simplified dynamical finite element method model named three beams model was established for the girder with double ribs. Based on the simplified model four stiffness formulae were deduced according to Hamilton principle. These formulae reflect well the contribution of the flexural, shearing, free torsion and restricted torsion deformation, respectively. An identification method about modal parameters was put forward by combining method of peak value and power spectral density according to modal test under ambient excitation. The dynamic finite element method analysis and modal test were carried out in a long-span concrete cable-stayed bridge. The results show that the errors of frequencies between theoretical analysis and test results are less than 10% mostly, and the most important modal parameters for cable-stayed bridge are determined to be the longitudinal floating mode, the first vertical flexural mode and the first torsional mode, which demonstrate that the method of stiffness distribution for three beams model is accurate and method to identify modal parameters is effective under ambient excitation modal test. 展开更多
关键词 bridge engineering cable-stayed bridge dynamic finite element method ambient excitation modal test
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Modeling of fluid-induced vibrations and identification of hydrodynamic forces on flow control valves 被引量:3
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作者 Samad Mehrzad Ilgar Javanshir +1 位作者 Ahmad Rahbar Ranji Seyyed Hadi Taheri 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2596-2603,共8页
Dynamics and vibration of control valves under flow-induced vibration are analyzed. Hydrodynamic load characteristics and structural response under flow-induced vibration are mainly influenced by inertia, damping, ela... Dynamics and vibration of control valves under flow-induced vibration are analyzed. Hydrodynamic load characteristics and structural response under flow-induced vibration are mainly influenced by inertia, damping, elastic, geometric characteristics and hydraulic parameters. The purpose of this work is to investigate the dynamic behavior of control valves in the response to self-excited fluid flow. An analytical and numerical method is developed to simulate the dynamic and vibrational behavior of sliding dam valves, in response to flow excitation. In order to demonstrate the effectiveness of proposed model, the simulation results are validated with experimental ones. Finally, to achieve the optimal valve geometry, numerical results for various shapes of valves are compared. Rounded valve with the least amount of flow turbulence obtains lower fluctuations and vibration amplitude compared with the flat and steep valves. Simulation results demonstrate that with the optimal design requirements of valves, vibration amplitude can be reduced by an average to 30%. 展开更多
关键词 flow-induced force hydrodynamic force finite element method(fem) valve design fluid-structure interaction vibration
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Kineto-elastodynamic analysis of hose cutting mechanism of an aluminum electrolytic capacitor casing machine
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作者 XIA Bi-zhong REN Shi-yuan +1 位作者 LIU Xin-cheng XU Chao 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第5期1217-1224,共8页
The kineto-elastodynamic(KED) model of a hose cutting mechanism used in the aluminum electrolytic capacitor(AEC) casing machine is developed to investigate the dynamic characteristics. According to the composition cha... The kineto-elastodynamic(KED) model of a hose cutting mechanism used in the aluminum electrolytic capacitor(AEC) casing machine is developed to investigate the dynamic characteristics. According to the composition characteristics, the cutting mechanism is divided into cam-roller and linkage two substructures. And the dynamic models of the two substructures are established using the lumped parameter method and finite element method(FEM), respectively. In the model, the compliances of the camshaft and the links are taken into consideration. The elastic displacement of the links, angular error of the cutter and the dynamic stress of the links are analyzed based on the KED model. The results provide important information for structure optimization and vibration control of the mechanism. 展开更多
关键词 CUTTING mechanism kineto-elastodynamic lumped parameter method finite element method dynamic stress
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Dynamic analytic model of mechanism with links fabricated from symmetric laminates
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作者 蔡敢为 常平平 +2 位作者 马存志 王汝贵 李兆军 《Journal of Central South University of Technology》 EI 2006年第6期624-630,共7页
A four-bar linkage mechanism with links fabricated from symmetric laminates was studied. The mass matrix of the beam dement was obtained in light of the mass distribution characteristics of composite materials. The st... A four-bar linkage mechanism with links fabricated from symmetric laminates was studied. The mass matrix of the beam dement was obtained in light of the mass distribution characteristics of composite materials. The stiffness matrix of the beam element was derived from the constitutive equations of each layer and the relationship between the strain distribution and the node displacement of the beam element. The specific damping capacity of the beam element was analyzed according to the strain distribution of the beam element and the strain energy dissipation caused by vibration in each direction of each layer; and the damping coefficients were obtained according to the principle that the total energy dissipation of the beam element was equal to the work done by the equivalent damping force during a cycle of vibration, from which the damping matrix of the dynamic equations was obtained. Using the finite element method, the dynamic analytic model of the mechanism was obtained. The dynamic responses and natural frequency of the mechanism were obtained by simulation, respectively, and those of the simulation obtained by the proposed model were analyzed and compared with the results obtained by the conventional model. The work provides theoretical basis to a certain extent for the further research on nonlinear vibration characteristics and optimum design of this kind of mechanism. 展开更多
关键词 linkage mechanism finite element method composite materials DAMPING dynamic analysis
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基于FEM-MEI和正余弦算法的二维电磁成像方法
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作者 贾瀚钦 高红伟 +1 位作者 郝凯子 贾祖朋 《南京邮电大学学报(自然科学版)》 北大核心 2024年第4期68-76,共9页
针对二维介质目标的电磁成像问题,将正余弦算法(Sine Cosine Algorithm,SCA)与有限元方法(Finite Element Method,FEM)和不变性测试方程(Measured Equation of Invariance,MEI)进行结合提出一种新的成像方法。将FEM与MEI进行结合求解二... 针对二维介质目标的电磁成像问题,将正余弦算法(Sine Cosine Algorithm,SCA)与有限元方法(Finite Element Method,FEM)和不变性测试方程(Measured Equation of Invariance,MEI)进行结合提出一种新的成像方法。将FEM与MEI进行结合求解二维介质目标的电磁散射正问题,即求解Helmholtz方程。其中,MEI保证边界截断的精度,FEM适用于复杂介质目标的准确模拟。对于电磁散射逆问题,引入SCA并加以改进提出一种新的重构方法。该方法采用等效原理与格林函数的渐近式求得远区散射场,以测量的散射场和计算的散射场最大偏差为目标函数,采用改进的SCA优化介质参数,使目标函数达到最小值,以此重构散射体。为提高计算效率,采用MPI算法进行并行计算。文中采用基准函数展示了改进的SCA算法的快速收敛性,并采用非规则的均匀介质柱目标验证了成像方法的正确性。 展开更多
关键词 正余弦算法 有限元方法 MEI方法 电磁散射 二维成像
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荸荠冲击损伤有限元仿真分析及试验 被引量:1
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作者 张国忠 李子涵 +4 位作者 刘婉茹 张清洪 陈立明 裴蕾 刘浩蓬 《农业工程学报》 北大核心 2025年第4期40-49,共10页
荸荠机械采收及采后加工过程中常面临采收机械与荸荠间冲击而产生碰撞损伤等问题,为此采用Ansys软件开展荸荠冲击损伤的有限元仿真分析,以期获取提高荸荠机械采收与采后处理质量的途径与方法。根据试验测量荸荠本征参数,以线性弹塑性和... 荸荠机械采收及采后加工过程中常面临采收机械与荸荠间冲击而产生碰撞损伤等问题,为此采用Ansys软件开展荸荠冲击损伤的有限元仿真分析,以期获取提高荸荠机械采收与采后处理质量的途径与方法。根据试验测量荸荠本征参数,以线性弹塑性和主应变失效耦合模型建立荸荠材料模型,通过跌落试验标定并验证了模型参数,开展三因素三水平全因子杆条碰撞仿真试验探究跌落高度、碰撞接触面直径、碰撞材料对荸荠损伤的影响,并以考虑淤伤软化和破裂的损伤易感性评价标准建立了损伤易感性经验公式。测量得到荸荠果肉弹性模量、屈服强度、切线模量分别为7.916、0.586、4.554 MPa,主应变失效值为0.098,以失效网格体积和超过0.60 MPa应力区间体积对其冲击损伤分布进行模拟,淤伤体积、破裂体积及耗散能量与试验相对误差分别为7.18%、8.98%、6.62%,表明模型可用于描述荸荠在冲击载荷下的力学特性、破裂现象和能量耗散;杆条冲击试验结果表明,荸荠跌落高度与损伤易感性呈现线性增加关系,碰撞接触材料弹性模量对其损伤有显著影响,接触直径对损伤影响与接触材料有关,与结构钢碰撞时,损伤随直径增加出现先增大后减小现象,与PVC和橡胶碰撞时,损伤随接触直径增大而减小。研究结果可为荸荠机械化收获质量和采后处理技术与装备研究提供参考。 展开更多
关键词 荸荠 机械损伤 损伤模型 有限元 杆条
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二次内爆作用下钢筋混凝土结构累积毁伤研究
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作者 邓鹏 杨文汐 +3 位作者 胡世君 张舵 张超 陈仁朋 《湖南大学学报(自然科学版)》 北大核心 2025年第3期119-128,共10页
钢筋混凝土结构是常见的建筑结构形式,其内部爆炸的毁伤效应研究具有十分重要的现实意义.本研究通过与试验数据对比,验证了钢筋混凝土结构有限元建模方法的准确性.基于此方法,建立了2/3缩比的钢筋混凝土剪力墙结构有限元模型,分析不同... 钢筋混凝土结构是常见的建筑结构形式,其内部爆炸的毁伤效应研究具有十分重要的现实意义.本研究通过与试验数据对比,验证了钢筋混凝土结构有限元建模方法的准确性.基于此方法,建立了2/3缩比的钢筋混凝土剪力墙结构有限元模型,分析不同房间单独爆炸作用下顶板和剪力墙构件的破坏模式和动力响应,以及两个房间连续爆炸后的累积毁伤发展规律.研究表明:采用1 kg TNT单独爆炸时,毁伤主要发生在沿顶板的塑性铰线方向和墙板构件的连接支座处,顶板的破坏程度、位移和加速度响应均显著高于剪力墙,房间二和房间三顶板中心峰值位移分别达到41.5 mm和63.1 mm,残余位移分别为32.2 mm和46.1mm;两个房间连续爆炸工况下,对于强度较低、初始毁伤较大的板构件,二次连续内爆作用下的累积毁伤明显高于单独爆炸的毁伤线性叠加,房间二和房间三的顶板中心峰值位移分别高出133.6%和24.9%,残余位移分别高出144.6%和29.4%,因此必须考虑累积毁伤效应;但是,对于强度较高、初始毁伤较弱的墙构件,二次连续爆炸作用下的累积毁伤略微高于单独爆炸的毁伤线性叠加,可认为二者近似相等,此情况下可不考虑累积毁伤效应的影响. 展开更多
关键词 钢筋混凝土 有限元法 连续爆炸 累积毁伤 动态响应
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基于Pasternak地基模型的H(t)-T受荷桩受力变形分析
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作者 江杰 陈丽君 +3 位作者 柴文成 艾永林 欧孝夺 龚健 《上海交通大学学报》 北大核心 2025年第1期60-69,共10页
水平动荷载H(t)与扭矩T联合作用下的桩基受力变形较为复杂.为了更加准确地分析H(t)-T联合受荷桩的内力与位移,基于Pasternak地基模型考虑桩侧土体剪切效应;引入H(t)-T耦合因子,揭示多向荷载对桩身响应的影响机理;继而利用虚功原理推导... 水平动荷载H(t)与扭矩T联合作用下的桩基受力变形较为复杂.为了更加准确地分析H(t)-T联合受荷桩的内力与位移,基于Pasternak地基模型考虑桩侧土体剪切效应;引入H(t)-T耦合因子,揭示多向荷载对桩身响应的影响机理;继而利用虚功原理推导桩身单元综合刚度矩阵;最后采用改进的有限杆单元法获得H(t)-T联合受荷桩内力与位移数值解;并与已有理论解和有限元模拟结果进行对比验证.参数分析表明:土体剪切效应可约束桩身水平位移,但对扭转变形影响较小;水平动荷载增强了桩身抗扭承载力,水平动荷载幅值从0.2Q_(u)增大到1.0Q_(u)时,桩顶扭转角减小了22.6%;增大动荷载无量纲频率会减小桩顶位移和桩身最大弯矩,外荷载动力效应随桩埋深增加而减弱;杆单元模型减少了单元划分数量和计算时间,可有效提高计算效率. 展开更多
关键词 Pasternak地基模型 联合受荷桩 有限单元法 水平动荷载 扭矩
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