Prediction of large-scale dynamics using unresolved computations

Fuente: arXiv
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Main Authors: Chorin, A. J., Kast, A., Kupferman, R.
Format: Preprint
Published: 1999
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author Chorin, A. J.
Kast, A.
Kupferman, R.
author_facet Chorin, A. J.
Kast, A.
Kupferman, R.
contents We present a theoretical framework and numerical methods for predicting the large-scale properties of solutions of partial differential equations that are too complex to be properly resolved. We assume that prior statistical information about the distribution of the solutions is available, as is often the case in practice. The quantities we can compute condition the prior information and allow us to calculate mean properties of solutions in the future. We derive approximate ways for computing the evolution of the probabilities conditioned by what we can compute, and obtain ordinary differential equations for the expected values of a set of large-scale variables. Our methods are demonstrated on two simple but instructive examples, where the prior information consists of invariant canonical distributions
format Preprint
id arxiv_https___arxiv_org_abs_math_9909102
institution arXiv
publishDate 1999
record_format arxiv
spellingShingle Prediction of large-scale dynamics using unresolved computations
Chorin, A. J.
Kast, A.
Kupferman, R.
Numerical Analysis
We present a theoretical framework and numerical methods for predicting the large-scale properties of solutions of partial differential equations that are too complex to be properly resolved. We assume that prior statistical information about the distribution of the solutions is available, as is often the case in practice. The quantities we can compute condition the prior information and allow us to calculate mean properties of solutions in the future. We derive approximate ways for computing the evolution of the probabilities conditioned by what we can compute, and obtain ordinary differential equations for the expected values of a set of large-scale variables. Our methods are demonstrated on two simple but instructive examples, where the prior information consists of invariant canonical distributions
title Prediction of large-scale dynamics using unresolved computations
topic Numerical Analysis
url https://arxiv.org/abs/math/9909102