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用边有限元方法计算磁偶极子的三维电磁响应 被引量:9
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作者 沈金松 《计算物理》 CSCD 北大核心 2002年第6期537-543,共7页
用边有限元基函数导出了麦克斯韦 (Maxwell)方程的有限元关系式 ,计算了地下三维介质中磁偶极子的电磁场响应 .将场分量定义在有限单元的边上 ,解决了结点有限元方法中场切向分量不连续的矛盾 ,保证了源除外的所有单元内有旋无散的特性 ... 用边有限元基函数导出了麦克斯韦 (Maxwell)方程的有限元关系式 ,计算了地下三维介质中磁偶极子的电磁场响应 .将场分量定义在有限单元的边上 ,解决了结点有限元方法中场切向分量不连续的矛盾 ,保证了源除外的所有单元内有旋无散的特性 .将总场分离成背景场和二次场 ,使该方法适用于任何方向的磁偶极子源 .通过模拟算例分析了 7种Krylov子空间迭代算法以及不完全乔累斯基分解预处理手段在解大型线性代数方程组中的计算效率和收敛特性 .对比结果表明 ,施加不完全乔累斯基分解作预处理的广义乘积型双共轭梯度算法GPBiCG (Pbicg)收敛最快 ,是三维复杂介质电磁响应数值模拟的首选算法 . 展开更多
关键词 三维电磁响应 边有限元方法 磁偶极子 双共轭梯度迭代 不完全乔累斯基分解 数值计算
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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 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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