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A practical, illustrated guide for advanced students and engineers, this volume centers on the interplay between microscopic variables relevant to a non-Newtonian fluid and the stresses developed in large-scale kinematic fields. The book starts with surveys of classical continuum mechanics and typical non-Newtonian behavior, and then describes the two main kinematic fields, shearing and extensional flows. The author outlines continuum and molecular-based relations, discusses lubrication and calendaring as examples of flows that are close to viscometric or shearing flows, and uses spinning and film-blowing to illustrate nearly extensional flows. A final chapter contains material on stability and turbulence, including drag reduction in dilute solutions. With sophisticated computer methods included throughout, this important study will interest researchers in chemical and mechanical engineering, especially in the plastics and petroleum industries.
This volume investigates the complex relationship between microscopic fluid variables and the macroscopic stresses observed in non-Newtonian fluid systems. Roger I. Tanner, a recognized authority in the field, synthesizes classical continuum mechanics with modern molecular-based relations to provide a rigorous framework for analyzing fluid behavior. The text serves as a technical resource for advanced students and practicing engineers, utilizing sophisticated computational methods to bridge the gap between theoretical fluid dynamics and industrial application.
What You Will Find
Experts identify this work as a foundational text for those specializing in polymer processing and industrial fluid mechanics. Readers frequently note the high level of mathematical and physical density, which requires a strong background in engineering principles to fully utilize.
Page Count:
451
Publication Date:
1985-01-01
Publisher:
Oxford University Press
ISBN-10:
019856144X
ISBN-13:
9780198561446
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