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Mathematical Analysis of Viscoelastic Flows

Mathematical Analysis of Viscoelastic Flows

£40.99

Part of Classics in Applied Mathematics

  • Author: Michael Renardy, Virginia Polytechnic Institute and State University
  • Date Published: August 2000
  • availability: This item is not supplied by Cambridge University Press in your region. Please contact Soc for Industrial & Applied Mathematics for availability.
  • format: Paperback
  • isbn: 9780898714579

£ 40.99
Paperback

This item is not supplied by Cambridge University Press in your region. Please contact Soc for Industrial & Applied Mathematics for availability.
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  • The flow behavior of fluids such as molten plastics, biological fluids, and paints is much more varied and complex than that of traditional Newtonian fluids. The role of numerical simulation in the study of such flows has increased tremendously over the past fifteen years, and the phenomena and numerical difficulties in complex flows have led to new and challenging mathematical questions. Studying such flows presents a host of problems, as well as opportunities for mathematical analysis, including questions of asymptotics, qualitative dynamics, and adequacy of numerical methods. Mathematical Analysis of Viscoelastic Flows presents an overview of mathematical problems, methods, and results relating to research on viscoelastic flows.

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    Product details

    • Date Published: August 2000
    • format: Paperback
    • isbn: 9780898714579
    • length: 114 pages
    • dimensions: 252 x 172 x 8 mm
    • weight: 0.212kg
    • availability: This item is not supplied by Cambridge University Press in your region. Please contact Soc for Industrial & Applied Mathematics for availability.
  • Table of Contents

    Preface
    1. Phenomena in Non-Newtonian Flows
    2. Mathematical Formulation
    3. Behavior in Simple Flows
    4. Existence Theory
    5. Numerical Methods
    6. High Weissenberg Number Asymptotics
    7. Reentrant Corner Singularities
    8. Instabilities
    9. Change of Type
    10. Jet Breakup
    Bibliography
    Index.

  • Author

    Michael Renardy, Virginia Polytechnic Institute and State University

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