Title of article
Multilevel Monte Carlo for two phase flow and Buckley–Leverett transport in random heterogeneous porous media
Author/Authors
Müller، نويسنده , , Florian MüllerPatrick Jenny، نويسنده , , Patrick and Meyer، نويسنده , , Daniel W.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
18
From page
685
To page
702
Abstract
Monte Carlo (MC) is a well known method for quantifying uncertainty arising for example in subsurface flow problems. Although robust and easy to implement, MC suffers from slow convergence. Extending MC by means of multigrid techniques yields the multilevel Monte Carlo (MLMC) method. MLMC has proven to greatly accelerate MC for several applications including stochastic ordinary differential equations in finance, elliptic stochastic partial differential equations and also hyperbolic problems. In this study, MLMC is combined with a streamline-based solver to assess uncertain two phase flow and Buckley–Leverett transport in random heterogeneous porous media. The performance of MLMC is compared to MC for a two dimensional reservoir with a multi-point Gaussian logarithmic permeability field. The influence of the variance and the correlation length of the logarithmic permeability on the MLMC performance is studied.
Keywords
Multilevel Monte Carlo , Two phase transport , Two phase flow , Streamline solver , Random heterogeneous porous media
Journal title
Journal of Computational Physics
Serial Year
2013
Journal title
Journal of Computational Physics
Record number
1485904
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