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This monograph describes various methods for solving deformation problems of particulate solids, taking the reader from analytical to computational methods. The book is the first to present the topic of linear elasticity in mathematical terms that will be familiar to anyone with a grounding in fluid mechanics. It incorporates the latest advances in computational algorithms for elliptic partial differential equations, and provides the groundwork for simulations on high performance parallel computers. Numerous exercises complement the theoretical discussions, and a related set of self-documented programs is available to readers with Internet access. The work will be of interest to advanced students and practicing researchers in mechanical engineering, chemical engineering, applied physics, computational methods, and developers of numerical modeling software.
This monograph investigates the mathematical and computational principles required to solve deformation problems in particulate solids within elastic media. Authors Nhan Phan-Thien and Sangtae Kim leverage their expertise in fluid mechanics to bridge the gap between analytical theory and numerical simulation. By framing linear elasticity in terms familiar to fluid dynamicists, the text provides a unified approach to modeling complex material behaviors. The work integrates advanced algorithms for elliptic partial differential equations, establishing a framework for high-performance computing applications.
What You Will Find
Experts identify this text as a specialized resource for researchers and advanced students navigating the intersection of solid mechanics and computational physics. Readers frequently note the technical density of the prose, which assumes a strong background in mathematical modeling and engineering principles.
Page Count:
256
Publication Date:
1994-08-25
Publisher:
Oxford University Press
ISBN-10:
0195090861
ISBN-13:
9780195090864
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