Collaborative Research: Tuning-Free Adaptive Multilevel Discontinuous Galerkin Methods for Maxwell's Equations
Collaborative Research: Tuning-Free Adaptive Multilevel Discontinuous Galerkin Methods for Maxwell's Equations
批准号:
0810187
负责人:
Timothy Warburton
金额:
$18.82万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-07-15 至 2012-06-30
中文摘要
研究人员和同事正在制定、分析和实施自适应多层间断Galerkin方法来解决与时间调和Maxwell方程相关的内域/外域耦合问题。这些先进的有限元方法正被实现为基于自适应生成的计算域三角剖分层次的多级别技术。研究小组的重点是与自适应循环的基本步骤“SOLVE”、“ESTIMATE”、“MARK”和“REFINE”有关的三个中心问题。首先,在多级解算器内的平滑过程仅在由残差型后验误差估计器获得的三角剖分的新细化部分上执行。其次,后验误差分析还必须考虑这种局部平滑的影响,其目的是提供保证在每个细化步骤中减小全局离散化误差的条件。第三,用于细化的三角剖分的元素、面和边的选择基于批量准则,并且自动(自由调整)选择控制精化量的参数,以便实现整体算法的最佳性能。最后,该团队正在开发自动选择人工辐射边界条件参数的标准,这样也不需要代表用户进行调整。电磁现象的模拟是计算数学中一个特别具有挑战性的问题。研究人员和同事正在为电磁场计算中的自适应多级不连续Galerkin方法建立深厚的理论基础。他们正在开发一种可靠的算法工具,具有最佳的计算复杂性,可以用于电子工程应用中具有挑战性的现实问题的数值解决。该项目开发的方法有许多技术和科学应用,例如半导体模拟或粒子加速器设计。结果将通过公布算法和结果加以传播,并将向从业人员提供在该项目期间开发的参考计算机代码。
英文摘要
The investigator and colleagues are formulating, analyzing, and implementing adaptive multilevel Discontinuous Galerkin methods for coupled interior/exterior domain problems associated with the time-harmonic Maxwell equations. These advanced finite element methods are being realized as multilevel techniques on the basis of an adaptively generated hierarchy of triangulations of the computational domain. The research team is focusing on three central issues related to the basic steps `SOLVE', `ESTIMATE', `MARK', and `REFINE' of the adaptive loop. First, the smoothing process within the multilevel solver is performed only on the newly refined part of the triangulation obtained by a residual type a posteriori error estimator. Second, the a posteriori error analysis, which additionally has to take into account the effect of such local smoothing, aims to provide conditions guaranteeing a reduction of the global discretization error at each refinement step.Third, the selection of elements, faces and edges of the triangulation for refinement are based on a bulk criterion with an automatic (`tuning free') choice of the parameters controlling the amount of refinement in order to achieve optimal performance of the overall algorithm. Finally, the team is developing criteria to choose the parameters of artificial radiation boundary conditions automatically, such that no tuning on behalf of the user is required there as well.Simulation of electromagnetic phenomenais a particularly challenging problem in computational mathematics.The investigator and colleagues areestablishing a profound theoretical foundation for adaptive multilevel discontinuous Galerkin methods in electromagnetic field computations. They are developing a reliable algorithmic tool, of optimal computational complexity, that can be used for the numerical solution of challenging real-life problems in electrical engineering applications. The methods developed in this project have numerous technical and scientific applications, for instance semiconductor simulation or particle accelerator design. The results will be disseminated through publication of algorithms and results and reference computer codes being developed during this project will be made available to practitioners.
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Compatible and Nearly Compatible Finite Element Discretizations: Algorithms, Analysis and Applications
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批准号:0512673
-
项目类别:Standard Grant
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资助金额:$18.62万
-
财政年份:2005
-
负责人:Timothy Warburton
-
依托单位:
Collaborative Research ITR/NGS: An Integrated Simulation Environment for High-Resolution Computational Methods in Electromagnetics with Biomedical Applications
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批准号:0514002
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项目类别:Continuing Grant
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资助金额:$31.75万
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财政年份:2004
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负责人:Timothy Warburton
-
依托单位:
Collaborative Research ITR/NGS: An Integrated Simulation Environment for High-Resolution Computational Methods in Electromagnetics with Biomedical Applications
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批准号:0324911
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项目类别:Continuing Grant
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资助金额:$2.25万
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财政年份:2004
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负责人:Timothy Warburton
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依托单位:
国内基金
海外基金
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