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Method for assembling the finite element discretization of arbitrary weak equations involving local or non-local multiphysics couplings

机译:组装涉及局部或非局部多物理场耦合的任意弱方程的有限元离散化的方法

摘要

Disclosed are techniques for representing and modeling systems in which each system corresponds to an application mode. This may be done for one or more geometries using local and/or non-local couplings. For each application mode, physical quantities are modeled and may be defined using a graphical user interface. Physical properties may be used to model the physical quantities of each system. The physical properties may be defined in terms of numerical values or constants, and mathematical expressions that may include numerical values, space coordinates, time coordinates, and actual physical quantities. Physical quantities and any associated variables may apply to some or all of a geometric domain, and may also be disabled in other parts of a geometrical domain. Partial differential equations describe the physical quantities. One or more application modes may be combined using an automated technique into a combined system of partial differential equations as a multiphysics model.
机译:公开了用于表示和建模系统的技术,其中每个系统对应于一个应用程序模式。可以使用局部和/或非局部耦合对一个或多个几何形状完成此操作。对于每种应用模式,物理量都可以建模,并且可以使用图形用户界面进行定义。物理特性可用于对每个系统的物理量建模。可以根据数值或常数以及可以包括数值,空间坐标,时间坐标和实际物理量的数学表达式来定义物理性质。物理量和任何相关联的变量可能适用于某些或全部几何域,也可能在几何域的其他部分被禁用。偏微分方程描述了物理量。可以使用一种自动化技术将一个或多个应用模式组合为一个多物理场模型的偏微分方程组合系统。

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