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Increment-Dimensional Scaled Boundary Finite Element Method for Solving Transient Heat Conduction Problem 被引量:2
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作者 Li Fengzhi Li Tiantian +1 位作者 Kong Wei Cai Junfeng 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2018年第6期1073-1079,共7页
An increment-dimensional scaled boundary finite element method (ID-SBFEM) is developed to solve the transient temperature field.To improve the accuracy of SBFEM,the effect of high frequency factor on dynamic stiffness... An increment-dimensional scaled boundary finite element method (ID-SBFEM) is developed to solve the transient temperature field.To improve the accuracy of SBFEM,the effect of high frequency factor on dynamic stiffness is considered,and the first-order continued fraction technique is used.After the derivation,the SBFE equations are obtained,and the dimensions of thermal conduction,the thermal capacity matrix and the vector of the right side term in the equations are doubled.An example is presented to illustrate the feasibility and good accuracy of the proposed method. 展开更多
关键词 heat conduction scaled boundary finite element method(SBfem) temperature field accuracy
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Flow simulation considering adsorption boundary layer based on digital rock and finite element method 被引量:2
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作者 Yong-Fei Yang Ke Wang +7 位作者 Qian-Fei Lv Roohollah Askari Qing-Yan Mei Jun Yao Jie-Xin Hou Kai Zhang Ai-Fen Li Chen-Chen Wang 《Petroleum Science》 SCIE CAS CSCD 2021年第1期183-194,共12页
Due to the low permeability of tight reservoirs,throats play a significant role in controlling fluid flow.Although many studies have been conducted to investigate fluid flow in throats in the microscale domain,compara... Due to the low permeability of tight reservoirs,throats play a significant role in controlling fluid flow.Although many studies have been conducted to investigate fluid flow in throats in the microscale domain,comparatively fewer works have been devoted to study the effect of adsorption boundary layer(ABL)in throats based on the digital rock method.By considering an ABL,we investigate its effects on fluid flow.We build digital rock model based on computed tomography technology.Then,microscopic pore structures are extracted with watershed segmentation and pore geometries are meshed through Delaunay triangulation approach.Finally,using the meshed digital simulation model and finite element method,we investigate the effects of viscosity and thickness of ABL on microscale flow.Our results demonstrate that viscosity and thickness of ABL are major factors that significantly hinder fluid flow in throats. 展开更多
关键词 Digital rock Low-permeability rocks CT technology Adsorption boundary layer Numerical simulation finite element method
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THE COUPLING OF BOUNDARY ELEMENT AND FINITE ELEMENT METHODS FOR THE EXTERIOR NONSTATIONARY NAVIER-STOKES EQUATIONS 被引量:2
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作者 何银年 李开泰 《Acta Mathematica Scientia》 SCIE CSCD 1991年第2期190-207,共18页
In this paper, we represent a new numerical method for solving the nonstationary Stokes equations in an unbounded domain. The technique consists in coupling the boundary integral and finite element methods. The variat... In this paper, we represent a new numerical method for solving the nonstationary Stokes equations in an unbounded domain. The technique consists in coupling the boundary integral and finite element methods. The variational formulation and well posedness of the coupling method are obtained. The convergence and optimal estimates for the approximation solution are provided. 展开更多
关键词 THE COUPLING OF boundary element AND finite element methodS FOR THE EXTERIOR NONSTATIONARY NAVIER-STOKES EQUATIONS
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A Computational Framework for Parachute Inflation Based on Immersed Boundary/Finite Element Approach
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作者 HUANG Yunyao ZHANG Yang +3 位作者 PU Tianmei JIA He WU Shiqing ZHOU Chunhua 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2024年第4期502-514,共13页
A computational framework for parachute inflation is developed based on the immersed boundary/finite element approach within the open-source IBAMR library.The fluid motion is solved by Peskin's diffuse-interface i... A computational framework for parachute inflation is developed based on the immersed boundary/finite element approach within the open-source IBAMR library.The fluid motion is solved by Peskin's diffuse-interface immersed boundary(IB)method,which is attractive for simulating moving-boundary flows with large deformations.The adaptive mesh refinement technique is employed to reduce the computational cost while retain the desired resolution.The dynamic response of the parachute is solved with the finite element approach.The canopy and cables of the parachute system are modeled with the hyperelastic material.A tether force is introduced to impose rigidity constraints for the parachute system.The accuracy and reliability of the present framework is validated by simulating inflation of a constrained square plate.Application of the present framework on several canonical cases further demonstrates its versatility for simulation of parachute inflation. 展开更多
关键词 parachute inflation fluid-structure interaction immersed boundary method finite element method adaptive mesh refinement
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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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A Brief Summary of Finite Element Method Applications to Nonlinear Wave-structure Interactions
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作者 王赤忠 吴国雄 《Journal of Marine Science and Application》 2011年第2期127-138,共12页
We review recent advances in the finite element method (FEM) simulations of interactions between waves and structures. Our focus is on the potential theory with the fully nonlinear or second-order boundary condition. ... We review recent advances in the finite element method (FEM) simulations of interactions between waves and structures. Our focus is on the potential theory with the fully nonlinear or second-order boundary condition. The present paper has six sections. A review of previous work on interactions between waves and ocean structures is presented in Section one. Section two gives the mathematical formulation. In Section three, the finite element discretization, mesh generation and the finite element linear system solution methods are described. Section four presents numerical methods including time marching schemes, computation of velocity, remeshing and smoothing techniques and numerical radiation conditions. The application of the FEM to the wave-structure interactions are presented in Section five followed by the concluding remarks in Section six. 展开更多
关键词 finite element method fem mesh generation nonlinear water waves wave-structure interactions
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ALE FINITE ELEMENT ANALYSIS OF NONLINEAR SLOSHING PROBLEMS BASED ON F LUID VELOCITY POTENTIAL 被引量:1
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作者 陈建平 周儒荣 万水 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2003年第1期23-29,共7页
Base d on fluid velocity potential, an ALE finite element formulation for the analysi s of nonlinear sloshing problems has been developed. The ALE kinemat ical description is introduced to move the computational mesh... Base d on fluid velocity potential, an ALE finite element formulation for the analysi s of nonlinear sloshing problems has been developed. The ALE kinemat ical description is introduced to move the computational mesh independently of f luid motion, and the container fixed noninertial coordinate system is employed to establish the governing equations so that the mesh is needed to be updated in this coordinate system only. This leads to a very simple mesh moving algorithm which makes it easy to trace the motion of the moving boundaries and the free su rface without producing undesirable distortion of the computational mesh. The fi nite element method and finite difference method are used spacewise and timewise , respectively. A numerical example involving either forced horizontal oscillati on or forced pitching oscillation of the fluid filled container is presented to illustrate the effectiveness and the robustness of the method. In additi on, this work can be extended for the fluid structure interaction problems. 展开更多
关键词 nonlinear sloshing ar bitrary Lagrangian Eulerian (ALE) description finite element method (fem) n umerical simulation moving boundary
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Modeling Technology in Finite Element Analysis of Electrostatic Proximity Fuze Problem 被引量:2
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作者 李银林 施聚生 《Journal of Beijing Institute of Technology》 EI CAS 2000年第3期286-290,共5页
In order to analyze the electrostatic field concerned with electrostatic proximity fuze problem using the available finite analysis software package, the technology to model the problem with a scale reduction object a... In order to analyze the electrostatic field concerned with electrostatic proximity fuze problem using the available finite analysis software package, the technology to model the problem with a scale reduction object and boundary was presented. The boundary is determined by the maximum distance the sensor can detect. The object model is obtained by multiplying the terms in Poisson's equation with a scale reduction factor and the real value can be reconstructed with the same reverse process after software calculation. Using the finite element analysis program, the simulation value is close to the theoretical value with a little error. The boundary determination and scale reduction method is suitable to modeling the irregular electrostatic field around air targets, such as airplane, missile and so on, which is based on commonly used personal computer (PC). The technology reduces the calculation and storage cost greatly. 展开更多
关键词 electrostatic proximity fuze finite element analysis boundary condition scale reduction method
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Finite Element Modeling and Modal Analysis of Complicated Structure with Bolted Joints 被引量:3
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作者 蒲大宇 廖日东 +1 位作者 左正兴 冯慧华 《Journal of Beijing Institute of Technology》 EI CAS 2009年第3期273-277,共5页
A contact bolt model is proposed as a new modeling technique to investigate the complex structure with bolted joints for modal analysis and compared with the coupled bolt model, and the test results are given. Among t... A contact bolt model is proposed as a new modeling technique to investigate the complex structure with bolted joints for modal analysis and compared with the coupled bolt model, and the test results are given. Among these models, the coupled bolt model provides the best accurate responses compared with the experimental results. The contact bolt model shows the best effectiveness and usefulness in view of operational time. The bolt models proposed in this study are adopted for a dynamic characteristic analysis of a large diesel engine consisting of several parts which are connected by many bolts. The dynamic behavior of the entire engine structure was investigated by experiment. The coupled bolt model and the contact bolt model were applied to model the assembly of engine with high preload. The experimental results are in good agreement with the finite element method (FEM) results. Compared with the other models, the contact bolt model presented in this paper is more effective and useful in view of operational time and experience of analysts. 展开更多
关键词 finite element methodfem bolted joints modal analysis internal combustion engine
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Three-dimensional electric field calculations for wire chamber using element refinement method in ANSYS
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作者 Yao-Feng Zhang J. Barney +1 位作者 M. B. Tsang Chun-Lei Zhang 《Nuclear Science and Techniques》 SCIE CAS CSCD 2018年第12期96-101,共6页
Finite element analysis(FEA) method was employed to perform three-dimensional(3D) electric field simulations for gas detectors with multiple wire electrodes.A new element refinement method developed for use in conjunc... Finite element analysis(FEA) method was employed to perform three-dimensional(3D) electric field simulations for gas detectors with multiple wire electrodes.A new element refinement method developed for use in conjunction with the FEA program ANSYS allows successful meshing of the wires without physically inputting the wires in the chamber geometry. First, we demonstrate a model with only one wire, for which we calculate the potential distributions on the central plane and the end-cap region. The results are compared to the calculations obtained using GARFIELD, a two-dimensional program that uses the nearly exact boundary element method. Then we extend the method to same model, but with seven wires.Our results suggest that the new method can be applied easily to the 3D electric field calculations for complicated gas detectors with many wires and complicated geometry such as multiwire proportional chambers and time projection chambers. 展开更多
关键词 有限元素分析 ANSYS 电场计算 精炼方法 电线 房间 三维 电场模拟
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复合材料螺旋桨BEM-FEM流固耦合计算方法研究
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作者 郭春雨 朱世祺 +1 位作者 叶礼裕 王超 《中国舰船研究》 CSCD 北大核心 2024年第6期191-200,共10页
[目的]旨在预报复合材料螺旋桨的水动力性能并研究其流固耦合特性。[方法]结合边界元法(BEM)和有限元法(FEM)建立复合材料螺旋桨流固耦合计算方法,以边界元法计算复合材料螺旋桨桨叶表面压力及水动力,并将计算得到的桨叶表面压力传递到... [目的]旨在预报复合材料螺旋桨的水动力性能并研究其流固耦合特性。[方法]结合边界元法(BEM)和有限元法(FEM)建立复合材料螺旋桨流固耦合计算方法,以边界元法计算复合材料螺旋桨桨叶表面压力及水动力,并将计算得到的桨叶表面压力传递到有限元结构模型中,然后以有限元法预报复合材料螺旋桨桨叶受到载荷时的位移与应力分布,并将变形传递到螺旋桨边界元法水动力计算中,从而实现双向流固耦合计算;应用该方法对5471桨进行计算并与文献中的试验值进行对比分析,以验证该方法的可行性,随后将5471桨型复合材料螺旋桨与刚性桨的水动力性能进行对比分析。[结果]结果显示,采用所提方法可实现复合材料螺旋桨水动力性能分析,具有实施简单、计算效率高、准确等优点。[结论]所做研究可为复合材料螺旋桨的自适应性设计工作提供可靠的数据支撑,提升复合材料螺旋桨的设计效率。 展开更多
关键词 船用螺旋桨 复合材料螺旋桨 流固耦合 边界元法 有限元法
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船舶结构的建模及水下振动和辐射噪声的FEM/BEM计算 被引量:59
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作者 徐张明 汪玉 +1 位作者 华宏星 沈荣瀛 《船舶力学》 EI 2002年第4期89-95,共7页
船舶动力系统的振动通过壳板向水下辐射噪声的预报一直是非常关键的问题。船舶的声学设计应建立在全船结构声一体化的前提下 ,本文基于船体与周围声学流体介质的耦合作用 ,建立了带有浮筏结构的动力装置的整个双层壳体船舶的FEM/BEM数... 船舶动力系统的振动通过壳板向水下辐射噪声的预报一直是非常关键的问题。船舶的声学设计应建立在全船结构声一体化的前提下 ,本文基于船体与周围声学流体介质的耦合作用 ,建立了带有浮筏结构的动力装置的整个双层壳体船舶的FEM/BEM数学模型。在理论分析的基础上 ,利用有限元软件ANSYS建立了水下船舶结构的振动和声场耦合的模型 ,首先计算在模拟发动机的激励下船舶壳板的振动 ,并利用边界元软件SYSNOISE ,对轻外壳面上的声强进行预报。 展开更多
关键词 船舶结构 建模 水下振动 辐射噪声 fem/bem计算
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FEM/BEM法振动板减振降噪优化设计 被引量:5
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作者 史蒙 张军 +1 位作者 方吉 兆文忠 《大连交通大学学报》 CAS 2009年第2期1-5,共5页
振动板的减振降噪设计是相关工程中结构设计的重要内容之一,优化设计可在设计阶段通过对设计模型的定量修改获得理想的减振降噪效果.基于有限元直接法计算了一两端固支矩形平板的频率响应,以板局部厚度为设计变量,以振动板各节点振... 振动板的减振降噪设计是相关工程中结构设计的重要内容之一,优化设计可在设计阶段通过对设计模型的定量修改获得理想的减振降噪效果.基于有限元直接法计算了一两端固支矩形平板的频率响应,以板局部厚度为设计变量,以振动板各节点振动速度最小化为目标,建立了减小振动速度的优化模型,用可行方向法对一简支矩形板在1—200Hz的振动实施了优化;用间接边界元法对振动板在优化前、后的声学进行数值分析,以比较振动优化的降噪效果.实例结果表明,优化设计通过对结构重量的重新分布可在结构重量相对不变的情况下,在一较宽频段内均得到减振降噪效果. 展开更多
关键词 优化设计 减振降噪 有限元 边界元
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FEM/BEM混合法计算各向异性不均匀介质柱电磁散射 被引量:7
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作者 周平 徐金平 《电波科学学报》 EI CSCD 北大核心 2006年第4期619-623,共5页
应用有限元-边界元(FEM/BEM)混合法计算二维各向异性不均匀介质柱电磁散射,对介质柱内、外区域分别采用有限元和边界元法进行分析,然后应用边界条件建立部分稀疏部分满填充的矩阵方程。应用内观法结合多波前法求解该矩阵方程,分别计算... 应用有限元-边界元(FEM/BEM)混合法计算二维各向异性不均匀介质柱电磁散射,对介质柱内、外区域分别采用有限元和边界元法进行分析,然后应用边界条件建立部分稀疏部分满填充的矩阵方程。应用内观法结合多波前法求解该矩阵方程,分别计算了均匀分布和不均匀分布的各向异性介质柱的雷达散射截面。数值计算表明,有限元-边界元混合法在分析和计算不均匀开放域电磁问题时有一定的优势。 展开更多
关键词 有限元法 边界元法 各向异性介质 电磁散射 雷达散射截面
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基于BEM/FEM计算浸水结构振动特性 被引量:2
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作者 安小同 洪明 李艮田 《船海工程》 2011年第6期55-58,共4页
应用直接边界元和有限元方法分析水下结构体的固有频率和振动特性,根据边界元理论编译出相应的程序来计算水下结构的附加质量矩阵,将附加质量矩阵与现有的有限元程序相结合,分析水下结构体的固有频率和振动特性,以浸没于流体介质中的圆... 应用直接边界元和有限元方法分析水下结构体的固有频率和振动特性,根据边界元理论编译出相应的程序来计算水下结构的附加质量矩阵,将附加质量矩阵与现有的有限元程序相结合,分析水下结构体的固有频率和振动特性,以浸没于流体介质中的圆柱壳为例,通过与近似理论值的对比验证了数值计算结果的可靠性,表明流体介质改变了结构的振动特性。 展开更多
关键词 直接边界元 有限元 固有频率 附加质量矩阵 圆柱壳
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高层建筑地基、基础与上部结构动力共同工作的BEM/FEM耦合分析 被引量:4
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作者 张琪玮 陈鹏郎 牛荻涛 《长安大学学报(建筑与环境科学版)》 2003年第1期16-20,共5页
在对高层建筑地基、基础及上部结构动力共同工作深入研究的基础上 ,给出了一套考虑共同工作效应的有限元 /边界元耦合振型分解法 ,并通过实例分析和比较验证了该方法的有效性 .
关键词 高层建筑 动力 有限元 边界元 耦合法 地基基础
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基于矢量FEM-BEM方法的三维目标电磁散射矩阵特性分析
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作者 唐金元 王翠珍 邱兆杰 《青岛大学学报(工程技术版)》 CAS 2009年第2期29-33,共5页
研究三维目标电磁散射分析的矢量有限元-边界元(FEM-BEM)方法。通过构造内视法求解有限元-边界元方程组时系统矩阵的等价形式,分析了不同混合公式系统矩阵的条件数情况。分析显示,不同公式的系统矩阵条件数有很大不同,从而导致混合方法... 研究三维目标电磁散射分析的矢量有限元-边界元(FEM-BEM)方法。通过构造内视法求解有限元-边界元方程组时系统矩阵的等价形式,分析了不同混合公式系统矩阵的条件数情况。分析显示,不同公式的系统矩阵条件数有很大不同,从而导致混合方法不同公式的稳定性情况有明显差异。 展开更多
关键词 有限元 边界元 混合方法 电磁散射
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BEM/FEM耦合螺旋桨静强度计算方法 被引量:5
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作者 叶礼裕 王超 +1 位作者 李鹏 王锡栋 《中国舰船研究》 CSCD 北大核心 2017年第5期64-74,83,共12页
[目的]螺旋桨强度的可靠性与船舶安全航行直接相关。为了快速且准确地计算螺旋桨强度,[方法]将边界元(BEM)和有限元法(FEM)耦合开发螺旋桨强度预报程序。运用低阶边界元法程序对螺旋桨进行水动力性能计算,并使用普朗特—许力汀平板摩擦... [目的]螺旋桨强度的可靠性与船舶安全航行直接相关。为了快速且准确地计算螺旋桨强度,[方法]将边界元(BEM)和有限元法(FEM)耦合开发螺旋桨强度预报程序。运用低阶边界元法程序对螺旋桨进行水动力性能计算,并使用普朗特—许力汀平板摩擦阻力公式进行粘性修正,然后将计算得到的桨叶表面压力和粘性修正力作为有限元法结构计算的面力输入。针对螺旋桨结构形状的特殊性,发展实体螺旋桨有限元结构单元的自动划分方法,运用有限元结构计算方程计算出螺旋桨在表面压力和体积力作用下的应力与位移分布。以DTRC 4119模型桨为例,对提出的方法进行收敛性和网格无关性分析,并与文献的有限元软件计算结果进行比较,以验证其有效性。[结果]计算结果表明,提出的方法能够准确计算螺旋桨的应力和位移分布。[结论]该方法避免了人工建模及有限元网格划分的过程,具有实施程序简便、计算效率高等优点,可嵌入到螺旋桨的理论设计和优化设计过程中,形成快速计算螺旋桨强度的能力,提高螺旋桨设计的效率。 展开更多
关键词 螺旋桨 强度预报 边界元法 有限元法 应力分布
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基于XFEM-MBEM的嵌入式离散裂缝模型流固耦合数值模拟方法 被引量:8
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作者 杜旭林 程林松 +2 位作者 牛烺昱 方思冬 曹仁义 《力学学报》 EI CAS CSCD 北大核心 2021年第12期3413-3424,共12页
离散缝网的表征与模拟是目前国内外研究的热点.在非常规油气开发过程中,由于地应力场的存在会对裂缝的流动属性产生显著影响,若将裂缝视为静态对象,与矿场数据会出现极大偏差,因此要基于动态裂缝做更深入的研究.本文针对致密油藏应力场... 离散缝网的表征与模拟是目前国内外研究的热点.在非常规油气开发过程中,由于地应力场的存在会对裂缝的流动属性产生显著影响,若将裂缝视为静态对象,与矿场数据会出现极大偏差,因此要基于动态裂缝做更深入的研究.本文针对致密油藏应力场-渗流场耦合力学问题,提出了一种高效的混合数值离散化方法,其中采用扩展有限元法(XFEM)求解岩石的弹性形变,采用了混合边界元法(MBEM)精确计算基岩与裂缝间的非稳态窜流,这两种数值格式是完全耦合的,并对整体计算格式的时间项进行了全隐式求解,可准确表征致密油藏开采过程中的裂缝变形及流体流动机理.此外,本文采用了嵌入式离散裂缝前处理算法显式表征大尺度水力压裂缝,并考虑了支撑剂的作用;采用了双孔有效应力原理和双重介质隐式裂缝表征方法,可捕捉基质与小尺度天然裂缝的动态信息;由此,本文所提出的混合模型综合表征了基质-天然裂缝-水力压裂缝共同组成的致密油藏复杂渗流环境,并通过几个实例论证了模型的准确性,研究表明:对致密油藏压裂水平井进行产能评价时,应力场所引起渗流参数的改变及裂缝开度降低的影响不可忽略.本文研究可为非常规油气资源的开发提供理论指导. 展开更多
关键词 致密油藏 嵌入式离散裂缝模型 扩展有限元 混合边界元 流固耦合
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无网格FEM-BEM法计算舱室空间声传递函数 被引量:2
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作者 刘延善 曾向阳 王海涛 《振动与冲击》 EI CSCD 北大核心 2016年第9期7-12,19,共7页
对于舱室空间低频声场计算问题,通常采用有限元法(FEM)或者边界元法(BEM),但是当封闭空间内部存在其他物体,又需要考虑外部激励对内场的影响时,直接采用单一的前述方法不能满足建模计算要求,而且这些基于网格的方法在前处理、光顺化处... 对于舱室空间低频声场计算问题,通常采用有限元法(FEM)或者边界元法(BEM),但是当封闭空间内部存在其他物体,又需要考虑外部激励对内场的影响时,直接采用单一的前述方法不能满足建模计算要求,而且这些基于网格的方法在前处理、光顺化处理等方面都存在不足。针对这些问题,将有限元和边界元法结合,并将其无网格化,这对于封闭环境的声场预测是一种新的尝试。首先推导了无网格FEM-BEM计算模型,对微分方程的离散、形函数构造等细节进行了详细阐述,然后以实际算例对提出的方法进行了验证,结果表明,无网格FEM-BEM方法和SYSNOISE的计算结果保持一致;进一步与实测结果的对比表明,该方法在低频率范围内,各测点平均声压级相对误差在5.26%以内。这说明,该方法不仅适用于复杂问题的计算,同时还具有良好的计算精度。 展开更多
关键词 有限元法 边界元法 无网格法 声传递函数
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