Introduction to the Thermodynamically Constrained Averaging Theory for Porous Medium Systems (Hardcover, 2014 ed.)

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Thermodynamically constrained averaging theory provides a consistent method for upscaling conservation and thermodynamic equations for application in the study of porous medium systems. The method provides dynamic equations for phases, interfaces, and common curves that are closely based on insights from the entropy inequality. All larger scale variables in the equations are explicitly defined in terms of their microscale precursors, facilitating the determination of important parameters and macroscale state equations based on microscale experimental and computational analysis. The method requires that all assumptions that lead to a particular equation form be explicitly indicated, a restriction which is useful in ascertaining the range of applicability of a model as well as potential sources of error and opportunities to improve the analysis.

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Product Description

Thermodynamically constrained averaging theory provides a consistent method for upscaling conservation and thermodynamic equations for application in the study of porous medium systems. The method provides dynamic equations for phases, interfaces, and common curves that are closely based on insights from the entropy inequality. All larger scale variables in the equations are explicitly defined in terms of their microscale precursors, facilitating the determination of important parameters and macroscale state equations based on microscale experimental and computational analysis. The method requires that all assumptions that lead to a particular equation form be explicitly indicated, a restriction which is useful in ascertaining the range of applicability of a model as well as potential sources of error and opportunities to improve the analysis.

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Product Details

General

Imprint

Springer International Publishing AG

Country of origin

Switzerland

Series

Advances in Geophysical and Environmental Mechanics and Mathematics

Release date

March 2014

Availability

Expected to ship within 12 - 17 working days

First published

2014

Authors

,

Dimensions

235 x 155 x 37mm (L x W x T)

Format

Hardcover

Pages

582

Edition

2014 ed.

ISBN-13

978-3-319-04009-7

Barcode

9783319040097

Categories

LSN

3-319-04009-X



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