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AN OPTIMIZATION-BASED APPROACH FOR THE DESIGN OF PDE SOLUTION ALGORITHMS

机译:PDE求解算法设计的基于优化方法

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摘要

We develop and analyze an optimization-based approach for the robust and efficient solution of PDE problems consisting of multiple physics operators with fundamentally different mathematical properties. Our approach relies on three essential steps: decomposition of the original problem into subproblems for which robust solution algorithms are available; integration of the subproblems into an equivalent PDE-constrained optimization problem; and solution of the resulting optimization problem either directly as a fully coupled algebraic system or in the null space of the PDE constraints. This strategy gives rise to a general approach for synthesizing robust solvers for complex coupled problems from solvers for their simpler physics components.
机译:我们开发和分析基于稳健和有效解决PDE问题的基于优化的方法,该方法由具有根本不同的数学属性的多个物理算子组成。我们的方法依赖于三个基本步骤:将原始问题分解为可使用健壮求解算法的子问题;将子问题集成到等效的PDE约束的优化问题中;以及直接作为完全耦合的代数系统或在PDE约束的零空间中解决所得的优化问题。这种策略产生了一种综合方法,可以从求解器的简单物理组件中为复杂的耦合问题合成鲁棒的求解器。

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