3 papers
physics.comp-ph2019
Modeling tissue perfusion in terms of 1d-3d embedded mixed-dimension coupled problems with distributed sources
Timo Koch, Martin Schneider, Rainer Helmig +1
We present a new method for modeling tissue perfusion on the capillary scale. The microvasculature is represented by a network of one-dimensional vessel segments embedded in the ex…
physics.comp-ph2018
The stochastic counterpart of conservation laws with heterogeneous conductivity fields: application to deterministic problems and uncertainty quantification
Amir H. Delgoshaie, Peter W. Glynn, Patrick Jenny +1
Conservation laws in the form of elliptic and parabolic partial differential equations (PDEs) are fundamental to the modeling of many problems such as heat transfer and flow in por…
physics.comp-ph2018
Sequential Fully Implicit Formulation for Compositional Simulation using Natural Variables
A. Moncorge, H. A. Tchelepi, P. Jenny
The Sequential Fully Implicit (SFI) method was proposed to simulate coupled immiscible multiphase fluid flow in porous media. Later, it was extended to the black-oil model, whereby…