
As an Amazon Associate and affiliate partner, Menrva Books earns from qualifying purchases. Learn more
This much-needed monograph presents a systematic, step-by-step approach to the continuum modeling of flow phenomena exhibited within materials endowed with a complex internal microstructure, such as polymers and liquid crystals. By combining the principles of Hamiltonian mechanics with those of irreversible thermodynamics, Antony N. Beris and Brian J. Edwards, renowned authorities on the subject, expertly describe the complex interplay between conservative and dissipative processes. Throughout the book, the authors emphasize the evaluation of the free energy--largely based on ideas from statistical mechanics--and how to fit the values of the phenomenological parameters against those of microscopic models. With Thermodynamics of Flowing Systems in hand, mathematicians, engineers, and physicists involved with the theoretical study of flow behavior in structurally complex media now have a superb, self-contained theoretical framework on which to base their modeling efforts.
This text investigates the theoretical framework required to model flow phenomena in materials characterized by complex internal microstructures. The authors, Antony N. Beris and Brian J. Edwards, leverage their expertise in fluid mechanics and thermodynamics to bridge the gap between microscopic material behavior and macroscopic continuum modeling. By integrating Hamiltonian mechanics with irreversible thermodynamics, the book provides a rigorous methodology for evaluating free energy and phenomenological parameters in complex media such as polymers and liquid crystals.
What You Will Find
Experts recognize this monograph as a foundational resource for researchers and engineers working in the theoretical study of complex fluid behavior. Readers frequently note the high level of mathematical rigor and the systematic, self-contained nature of the presentation.
Page Count:
704
Publication Date:
1994-05-26
Publisher:
Oxford University Press
ISBN-10:
019507694X
ISBN-13:
9780195076943
No comments yet. Be the first to share your thoughts!