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GEMS: A Fully Integrated PETSc-Based Solver for Coupled Cardiac Electromechanics and Bidomain Simulations

机译:GEMS:完全集成的基于PETSc的求解器可用于耦合心脏机电和双域仿真

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摘要

Cardiac contraction is coordinated by a wave of electrical excitation which propagates through the heart. Combined modeling of electrical and mechanical function of the heart provides the most comprehensive description of cardiac function and is one of the latest trends in cardiac research. The effective numerical modeling of cardiac electromechanics remains a challenge, due to the stiffness of the electrical equations and the global coupling in the mechanical problem. Here we present a short review of the inherent assumptions made when deriving the electromechanical equations, including a general representation for deformation-dependent conduction tensors obeying orthotropic symmetry, and then present an implicit-explicit time-stepping approach that is tailored to solving the cardiac mono- or bidomain equations coupled to electromechanics of the cardiac wall. Our approach allows to find numerical solutions of the electromechanics equations using stable and higher order time integration. Our methods are implemented in a monolithic finite element code GEMS (Ghent Electromechanics Solver) using the PETSc library that is inherently parallelized for use on high-performance computing infrastructure. We tested GEMS on standard benchmark computations and discuss further development of our software.
机译:心脏收缩通过在心脏中传播的电刺激波来协调。心脏电和机械功能的组合建模提供了最全面的心脏功能描述,并且是心脏研究的最新趋势之一。由于电方程的刚度和机械问题中的整体耦合,对心脏机电的有效数值建模仍然是一个挑战。在这里,我们简要介绍了推导机电方程式时所做出的固有假设,包括服从正交各向异性的变形相关传导张量的一般表示,然后提出了一种隐式-显式时间步进方法,专门用于解决心脏单调-或与心脏壁机电耦合的双畴方程。我们的方法允许使用稳定和高阶时间积分来找到机电方程的数值解。我们的方法是使用PETSc库在单片有限元代码GEMS(根特机电求解器)中实现的,该库固有地并行化以用于高性能计算基础结构。我们在标准基准计算上测试了GEMS,并讨论了我们软件的进一步开发。

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