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A system integration framework for coupled multiphysics simulations

机译:用于耦合多物理场仿真的系统集成框架

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摘要

Multiphysics simulations are playing an increasingly important role in computational science and engineering for applications ranging from aircraft design to medical treatments. These simulations require integration of techniques and tools from multiple disciplines, and in turn demand new advanced technologies to integrate independently developed physics solvers effectively. In this paper, we describe some numerical, geometrical, and system software components required by such integration, with a concrete case study of detailed, three-dimensional, parallel rocket simulations involving system-level interactions among fluid, solid, and combustion, as well as subsystem-level interactions. We package these components into a software framework that provides common-refinement based methods for transferring data between potentially non-matching meshes, novel and robust face-offsetting methods for tracking Lagrangian surface meshes, as well as integrated support for parallel mesh optimization, remeshing, algebraic manipulations, performance monitoring, and high-level data management and I/O. From these general, reusable framework components we construct domain-specific building blocks to facilitate integration of parallel, multiphysics simulations from high-level specifications that are easy to read and can also be visualized graphically. These reusable building blocks are integrated with independently developed physics codes to perform various multiphysics simulations.
机译:多物理场仿真在计算科学和工程中的作用日益重要,其应用范围从飞机设计到医学治疗。这些模拟需要集成来自多个学科的技术和工具,进而需要新的先进技术来有效集成独立开发的物理求解器。在本文中,我们描述了这种集成所需的一些数值,几何和系统软件组件,并以具体的案例研究为例,对涉及流体,固体和燃烧之间的系统级相互作用的详细的三维平行火箭模拟进行了研究。作为子系统级的交互。我们将这些组件打包到一个软件框架中,该软件框架提供了用于在潜在不匹配网格之间传输数据的基于通用优化的方法,用于跟踪拉格朗日曲面网格的新颖且鲁棒的面偏移方法,以及对并行网格优化,重新网格化,代数处理,性能监视以及高级数据管理和I / O。从这些通用的可重用框架组件中,我们构造了特定于域的构建块,以促进易于理解且也可以图形化显示的,来自高级规范的并行多物理场仿真的集成。这些可重复使用的构建块与独立开发的物理代码集成在一起,以执行各种多物理场模拟。

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