Publication Details

Category Text Publication
Reference Category Conference papers
Title (Primary) Adaptive time stepping with automatic control for modeling nonlinear H2M coupled processes in porous media
Title (Secondary) 45th U.S. Rock Mechanics / Geomechanics Symposium, June 26 - 29, 2011 , San Francisco, California
Author Wang, W. ORCID logo ; Görke, U.-J.; Kolditz, O. ORCID logo
Source Titel ARMA Paper
Year 2011
Department ENVINF
Volume 11-372
Language englisch
Abstract

This paper deals with a time stepping method for the finite element simulation of two phase flow hydraulic and mechanical (H2M) coupled processes in porous media, which is a common phenomenon in geological applications such as CO2 storage facilities. The computation task arising from the numerical modeling of H2M coupled processes in such real geological application is intensive. Therefore, the high performance computing is of interest to the corresponding researchers. In the present study, we present a time stepping method with PI (proportional and integral feedback) automatic control to improve the computation efficiency of the modeling of H2M coupled processes. We apply the PI control to solve the nonlinear coupled partial differential equations with a first order finite difference scheme for time discretization and the Picard method for linearization. The efficiency of the present method is demonstrated by applying it to a CO  storage benchmark.

Persistent UFZ Identifier https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=12750
Wang, W., Görke, U.-J., Kolditz, O. (2011):
Adaptive time stepping with automatic control for modeling nonlinear H2M coupled processes in porous media
45th U.S. Rock Mechanics / Geomechanics Symposium, June 26 - 29, 2011 , San Francisco, California
ARMA Paper 11-372
American Rock Mechanics Association, Alexandria, VA,