Non-perturbative Methods in Statistical Descriptions of Turbulence

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Non-perturbative Methods in Statistical Descriptions of Turbulence

Cybernetics and systems theory Classical mechanics Optical physics Maths for engineers Engineering: Mechanics of solids Engineering: Mechanics of fluids

Author: Jan Friedrich

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Collection: Progress in Turbulence - Fundamentals and Applications

Language: English

Published by: Springer

Published on: 25th September 2020

Format: LCP-protected ePub

Size: 13 Mb

ISBN: 9783030519773


Overview

This book provides a comprehensive overview of statistical descriptions of turbulent flows. Its main objectives are to point out why ordinary perturbative treatments of the Navier–Stokes equation have been rather futile, and to present recent advances in non-perturbative treatments, e.g., the instanton method and a stochastic interpretation of turbulent energy transfer.

Introduction to Turbulent Fluid Motion

After a brief introduction to the basic equations of turbulent fluid motion, the book outlines a probabilistic treatment of the Navier–Stokes equation and chiefly focuses on the emergence of a multi-point hierarchy and the notion of the closure problem of turbulence.

Multiscaling Features and Closure Methods

Furthermore, empirically observed multiscaling features and their impact on possible closure methods are discussed, and each is put into the context of its original field of use, e.g., the renormalization group method is addressed in relation to the theory of critical phenomena.

Intended Audience

The intended readership consists of physicists and engineers who want to get acquainted with the prevalent concepts and methods in this research area.

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