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The Physics of Composite and Porous Media

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Book Details

  • Author: T. J. T. Spanos

  • Brand: CRC Press

  • Edition: 1

  • Binding: Paperback

  • ISBN: 9780367875305

  • Pages: 300

  • Release Date: 12-12-2019

  • Package Dimensions: 9.9 x 7.0 x 0.7 inches

  • Languages: English


About the Book

The Physics of Composite and Porous Media by T.J.T. Spanos offers a deep dive into the non-linear field theory that explains the physical processes occurring in the earth, specifically in composite and porous media. Building on the concepts introduced in Spanos's previous book, The Thermophysics of Porous Media, this volume provides a detailed explanation of the interactions of various phases in porous materials at both the macroscale and megascale.

Key Topics Covered:

  • Non-linear Field Theory: Explanation of how physical processes in composite and porous materials are governed by non-linear field theory.

  • Macroscopic and Megascale Processes: Discussion on how physical processes at the macroscale lead to interactions that impact processes at the larger megascale.

  • Experimental, Numerical, and Theoretical Work: Insights into how experimental and theoretical work, along with numerical methods, contribute to the study of porous and composite materials.

  • Multiphase Interactions: Exploration of how the different phases of porous media interact and give rise to complex physical phenomena.

Who Will Benefit:

  • Graduate Students and Academic Researchers: This book provides advanced theoretical insights and is ideal for those studying physical processes in composite and porous media.

  • Industry Professionals: It will also be valuable to professionals in oil, hydrogeology, and environmental sciences, where understanding these interactions is essential.

This book serves as an essential resource for researchers and professionals involved in the study and application of porous media in various scientific and industrial contexts. It presents a comprehensive understanding of the physical behaviors and interactions that shape the dynamics of these materials.