Poroelasticity is an example of coupled processes which are crucial for many applications including safety assessment of radioactive waste repositories. Numerical solution of poroelasticity problems discretized with finite volume -- virtual element scheme leads to systems of algebraic equations, which may be solved simultaneously or iteratively. In this work, parallel scalability of the monolithic strategy and of the fixed-strain splitting strategy is examined, which depends mostly on linear solver performance. It was expected that splitting strategy would show better scalability due to better performance of a black-box linear solver on systems with simpler structure. However, this is not always the case.
翻译:孔径度是各种对许多应用至关重要的结合过程的一个实例,其中包括放射性废物存放处的安全评估。与数量有限分开的孔径问题的数字解决办法 -- -- 虚拟元素方案导致代数方程系统,这些系统可以同时或迭代解决。在这项工作中,对单层战略和固定区分割战略的平行伸缩性进行了研究,这主要取决于线性求解器的性能。预计分离战略将显示出更好的伸缩性,因为使用结构更简单的系统的黑盒线性求解器的性能更好,但情况并非总是如此。