Title of article
Efficient Bayesian inference of subsurface flow models using nested sampling and sparse polynomial chaos surrogates
Author/Authors
Elsheikh، نويسنده , , Ahmed H. and Hoteit، نويسنده , , Ibrahim and Wheeler، نويسنده , , Mary F.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
23
From page
515
To page
537
Abstract
An efficient Bayesian calibration method based on the nested sampling (NS) algorithm and non-intrusive polynomial chaos method is presented. Nested sampling is a Bayesian sampling algorithm that builds a discrete representation of the posterior distributions by iteratively re-focusing a set of samples to high likelihood regions. NS allows representing the posterior probability density function (PDF) with a smaller number of samples and reduces the curse of dimensionality effects. The main difficulty of the NS algorithm is in the constrained sampling step which is commonly performed using a random walk Markov Chain Monte-Carlo (MCMC) algorithm. In this work, we perform a two-stage sampling using a polynomial chaos response surface to filter out rejected samples in the Markov Chain Monte-Carlo method. The combined use of nested sampling and the two-stage MCMC based on approximate response surfaces provides significant computational gains in terms of the number of simulation runs. The proposed algorithm is applied for calibration and model selection of subsurface flow models.
Keywords
Subsurface flow models , Nested sampling , Polynomial chaos expansion , Least Angle Regression , Sparsity promoting regularization
Journal title
Computer Methods in Applied Mechanics and Engineering
Serial Year
2014
Journal title
Computer Methods in Applied Mechanics and Engineering
Record number
1596407
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