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湍流:英文版(影印版)

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湍流:英文版(影印版)

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作 者:Uriel Frisch

出 版 社:世界图书出版公司

出版时间:2011 年4月

I S B N:9787510032943

  • 湍流
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  • 湍流
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    30.80元
  • 湍流
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    价格
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  • 湍流
  • 送货上门
  • 价格
    31.20元
  • 湍流
  • 送货上门
  • 价格
    31.20元

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    编辑推荐

    作者Frisch是国际上公认的湍流研究专家之一.本书根据他多年来授课的教材整理而成的.主要内容是以Kolmogorov学派的湍流理论为主,系统介绍了半个世纪以来这一理论的发展及今后的研究方向.

    内容简介

    作者Frisch是国际上公认的湍流研究专家之一.《湍流曲文(影印版)》是根据他多年来授课的教材整理而成的.主要内容是以Kolmogorov学派的湍流理论为主,系统介绍了半个世纪以来这一理论的发展及今后的研究方向.本书内容新,重点突出,阐述深入浅出。最后一章还专门向读者介绍了如何阅读参考资料。
      

    作者简介

    目录

    《湍流:英文(影印版)》
    preface
    chapter 1
    introduction
    1.1 turbulence and symmetries
    1.2 outline of the book
    chapter 2
    symmetries and conservation laws
    2.1 periodic boundary conditions
    2.2 symmetries
    2.3 conservation laws
    2.4 energy budget scale-by-scale
    chapter 3
    why a probabilistic description of turbulence?
    3.1 there is something predictable in a turbulent signal
    3.2 a model for deterministic chaos
    3.3 dynamical systems
    3.4 the navier-stokes equation as a dynamical system
    chapter 4
    probabilistic tools: a survey
    .4.1 random variables
    4.2 random functions
    4.3 statistical symmetries
    4.4 ergodic results
    4.5 the spectrum of stationary random functions
    chapter 5
    two experimental laws of fully developed turbulence
    5.1 the two-thirds law
    5.2 the energy dissipation law
    chapter 6
    the kolmogorov 1941 theory
    6.1 kolmogorov 1941 and symmetries
    6.2 kolmogorov's four-fifths law
    6.2.1 the k/trm/m-howarth-monin relation for anisotropic turbulence
    6.2.2 the energy flux for homogeneous turbulence
    6.2.3 the energy flux for homogeneous isotropic turbulence
    6.2.4 from the energy flux relation to the four-fifths law
    6.2.5 remarks on kolmogorov's four-fifths law
    6.3 main results of the kolmogorov 1941 theory
    6.3.1 the kolmogorov-obukhov law and the structure func-tions
    6.3.2 effect of a finite viscosity: the dissipation range
    6.4 kolmogorov and landau: the !ack of universality
    6.4.1 the original formulation of landau's objection
    6.4.2 a modern reformulation of landau's objection
    6.4.3 kolmogorov and landau reconciled?
    6.5 historical remarks on the kolmogorov 1941 theory
    chapter 7
    phenomenology of turbulence in the sense of kolmogorov 1941
    7.1 introduction
    7.2 basic tools of phenomenology
    7.3 the richardson cascade and the !ocalness of interactions
    7.4 reynolds numbers and degrees of freedom
    7.5 microscopic and macroscopic degrees of freedom
    7.6 the distribution of velocity gradients
    7.7 the law of decay of the energy
    7.8 beyond phenomenology: finite-time blow-up of ideal flow
    chapter 8
    intermittency
    8.1 introduction
    8.2 self-similar and intermittent random functions
    8.3 experimental results on intermittency
    8.4 exact results on intermlttency
    8.5 intermittency models based on the velocity
    8.5.1 theβ-model
    8.5.2 the bifractal model
    8.5.3 the multifractal model
    8.5.4 a probabilistic reformulation of the multifractal model
    8.5.5 the intermediate dissipation range and multifractal universality
    8.5.6 the skewness and the flatness of velocity derivatives according to the multifractal model
    8.6 lntermittency models based on the dissipation
    8.6.1 multifractal dissipation
    8.6.2 bridging multifractality based on the velocity and mul-tifractality based on the dissipation
    8.6.3 random cascade models
    8.6.4 large deviations and multifractality
    8.6.5 the lognormal model and its shortcomings
    8.7 shell models
    8.8 historical remarks on fraetal intermitteney models
    8.9 trends in intermitteney research
    8.9.1 vortex filaments: the sinews of turbulence?
    8.9.2 statistical signature of vortex filaments: dog or tail?
    8.9.3 the distribution of velocity increments
    chapter 9
    further reading: a guided tour
    9.1 introduction
    9.2 books on turbulence and fluid mechanics
    9.3 mathematical aspects of fully developed turbulence
    9.4 dynamical systems, fractals and turbulence
    9.5 closure, functional and diagrammatic methods
    9.5.1 the hopfequation
    9.5.2 functional and diagrammatic methods
    9.5.3 the direct interaction approximation
    9.5.4 closures and their shortcomings
    9.6 eddy viscosity, multiscale methods and renormalization
    9.6.1 eddy viscosity: a very old idea
    9.6.2 multiscale methods
    9.6.3 applications of multiscale methods in turbulence
    9.6.4 renormalization group (rg) methods
    9.7 two-dimensional turbulence
    9.7.1 cascades and vortices
    9.7.2 two-dimensional turbulence and statistical mechanics.
    9.7.3 conservative dynamics 'punctuated' by dissipative events
    9.7.4 from flatland to three-dimensional turbulence
    references
    author index
    subject index

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