
This book provides an in-depth look at fluid turbulence: the archetypal non-linear, non-equilibrium problem of statistical physics which has witnessed significant progress in recent years, facilitated by advances in laser anemometry, computer technology, and theoretical methods from quantum physics. A fully integrated work, The Physics of Fluid Turbulence approaches its subject as a universal phenomenon with a universal behavior. It includes a concise summary of the theory and practice of turbulence science up to 1960, followed by a detailed analysis of more recent developments in this area, including a rigorous formulation of the turbulence problem as an example of a non-equilibrium statistical system with strong coupling, along with the application of renormalized perturbation theory. Designed for those new to the subject, the book will also be useful to those who are familiar with the study of turbulence but have not yet approached the subject utilizing the theoretical methods from quantum physics that are covered here.
This book investigates the fundamental nature of fluid turbulence by framing it as a complex, non-equilibrium statistical system. W. D. McComb, a recognized authority in fluid dynamics, synthesizes historical developments in turbulence research with modern theoretical frameworks. He argues that turbulence is a universal phenomenon that can be rigorously analyzed through the application of renormalized perturbation theory and methods traditionally associated with quantum physics.
What You Will Find
Experts identify this text as a rigorous bridge between classical fluid mechanics and modern statistical physics. Readers frequently note the high level of mathematical density, making it a foundational resource for researchers and graduate students entering the field.
Page Count:
602
Publication Date:
1992-03-19
Publisher:
Clarendon Press
ISBN-10:
019856256X
ISBN-13:
9780198562566
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