In this paper we propose a novel coupled poroelasticity-diffusion model for the formation of extracellular oedema and infectious myocarditis valid in large deformations, manifested as an interaction between interstitial flow and the immune-driven dynamics between leukocytes and pathogens. The governing partial differential equations are formulated in terms of skeleton displacement, fluid pressure, Lagrangian porosity, and the concentrations of pathogens and leukocytes. A five-field finite element scheme is proposed for the numerical approximation of the problem, and we provide the stability analysis for a simplified system emanating from linearisation. We also discuss the construction of an adequate, Schur complement based, nested preconditioner. The produced computational tests exemplify the properties of the new model and of the finite element schemes.
翻译:在本文中,我们提出了一个新颖的结合孔径分解模型,用于形成在大畸形中有效的外细胞水肿和传染性心肌炎,表现为白鲸和病原体之间的间流和免疫驱动动态之间的相互作用。调节的局部差异方程式是按骨骼脱位、液体压力、拉格朗加亚的孔隙性、病原体和白鲸的浓度等方程式拟订的。为问题的数字近似提出了五处有限元素计划,并为线性化产生的简化系统提供了稳定性分析。我们还讨论了建造一个充足、基于舒尔补充的巢状先决条件物的问题。所产生的计算测试体现了新模型和有限元素计划的特性。