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Statistical Properties and Structure of Turbulent Convection

Statistical Properties and Structure of Turbulent Convection PDF Author: Dan Škandera
Publisher:
ISBN:
Category :
Languages : en
Pages : 131

Book Description


Statistical Properties and Structure of Turbulent Convection

Statistical Properties and Structure of Turbulent Convection PDF Author: Dan Škandera
Publisher:
ISBN:
Category :
Languages : en
Pages : 131

Book Description


Statistics and Scaling in Turbulent Rayleigh-Bénard Convection

Statistics and Scaling in Turbulent Rayleigh-Bénard Convection PDF Author: Emily S.C. Ching
Publisher: Springer Science & Business Media
ISBN: 9814560235
Category : Technology & Engineering
Languages : en
Pages : 71

Book Description
This Brief addresses two issues of interest of turbulent Rayleigh-Bénard convection. The first issue is the characterization and understanding of the statistics of the velocity and temperature fluctuations in the system. The second issue is the revelation and understanding of the nature of the scaling behavior of the velocity temperature structure functions. The problem under the Oberbeck-Boussinesq approximation is formulated. The statistical tools, including probability density functions (PDF) and conditional statistics, for studying fluctuations are introduced, and implicit PDF formulae for fluctuations obeying certain statistical symmetries are derived. Applications of these PDF formulae to study the fluctuations in turbulent Rayleigh-Bénard convection are then discussed. The phenomenology of the different types of scaling behavior: the Bolgiano-Obhukov scaling behavior when buoyancy effects are significant and the Kolmogorov-Obukhov-Corrsin scaling behavior when they are not, is introduced. A crossover between the two types of scaling behavior is expected to occur at the Bolgiano length scale above which buoyancy is important. The experimental observations are reviewed. In the central region of the convective cell, the Kolmogorov-Obukhov-Corrsin scaling behavior has been observed. On the other hand, the Bolgiano-Obukhov scaling remains elusive only until recently. By studying the dependence of the conditional temperature structure functions on the locally averaged thermal dissipation rate, evidence for the Bolgiano-Obukhov scaling has recently been found near the bottom plate. The different behaviors observed in the two regions could be attributed to the different size of the Bolgiano scale. What physics determines the relative size of the Bolgiano scale remains to be understood. The Brief is concluded by a discussion of these outstanding issues.

The Statistical Structure of Turbulent Convection: an Experimental Study

The Statistical Structure of Turbulent Convection: an Experimental Study PDF Author: Robert Carpenter Millard (Jr)
Publisher:
ISBN:
Category :
Languages : en
Pages : 86

Book Description


The Structure of Turbulent Shear Flow

The Structure of Turbulent Shear Flow PDF Author: A. A. R. Townsend
Publisher: Cambridge University Press
ISBN: 9780521298193
Category : Mathematics
Languages : en
Pages : 450

Book Description
Develops a physical theory from the mass of experimental results, with revisions to reflect advances of recent years.

Statistical Models and Turbulence

Statistical Models and Turbulence PDF Author: Murray Rosenblatt
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 512

Book Description


Statistics and Coherent Structures in Turbulent Convection

Statistics and Coherent Structures in Turbulent Convection PDF Author: Kin Lok Ma
Publisher:
ISBN:
Category : Heat
Languages : en
Pages : 190

Book Description


The Essence of Turbulence as a Physical Phenomenon

The Essence of Turbulence as a Physical Phenomenon PDF Author: Arkady Tsinober
Publisher: Springer
ISBN: 3319995316
Category : Technology & Engineering
Languages : en
Pages : 237

Book Description
Now in its second edition, this book clearly, concisely and comprehensively outlines the essence of turbulence. In view of the absence of a theory based on first principles and adequate tools to handle the problem, the “essence” of turbulence, i.e. what turbulence really is from a fundamental point of view, is understood empirically through observations from nature, laboratories and direct numerical simulations rather than explained by means of conventional formalistic aspects, models, etc., resulting in pertinent issues being described at a highly theoretical level in spite of the mentioned lack of theory. As such, the book highlights and critically reexamines fundamental issues, especially those of paradigmatic nature, related to conceptual and problematic aspects, key misconceptions and unresolved matters, and discusses why the problem is so difficult. As in the previous edition, the focus on fundamental issues is also a consequence of the view that without corresponding advances in fundamental aspects there is little chance of progress in any applications. More generally there is a desperate need for physical fundamentals of a great variety of processes in nature and technology in which turbulence plays a central role. Turbulence is omnipresent throughout the natural sciences and technology, but despite the vast sea of information available the book retains its brevity without oversimplifications, making it of interest to a broad audience.

Navier-Stokes Turbulence

Navier-Stokes Turbulence PDF Author: Wolfgang Kollmann
Publisher: Springer Nature
ISBN: 3031595785
Category : Navier-Stokes equations
Languages : en
Pages : 848

Book Description
This updated/augmented second edition retains it class-tested content and pedagogy as a core text for graduate courses in advanced fluid mechanics and applied science. The new edition adds revised sections, clarification, problems, and chapter extensions including a rewritten section on Schauder bases for turbulent pipe flow, coverage of Cantwell’s mixing length closure for turbulent pipe flow, and a section on the variational Hessian. Consisting of two parts, the first provides an introduction and general theory of fully developed turbulence, where treatment of turbulence is based on the linear functional equation derived by E. Hopf governing the characteristic functional that determines the statistical properties of a turbulent flow. In this section, Professor Kollmann explains how the theory is built on divergence free Schauder bases for the phase space of the turbulent flow and the space of argument vector fields for the characteristic functional. The second segment, presented over subsequent chapters, is devoted to mapping methods, homogeneous turbulence based upon the hypotheses of Kolmogorov and Onsager, intermittency, structural features of turbulent shear flows and their recognition. Adds section on Plancherel’s theorem and a detailed problem on analytic solution of functional differential equations; Extends chapter nine on characteristic functionals to greater explain the role of convection; Reinforces concepts with problems on the theory and particular examples of turbulent flows such as periodic pipe flow. . .

Advances in Turbulence XI

Advances in Turbulence XI PDF Author: J. M. L. M. Palma
Publisher: Springer Science & Business Media
ISBN: 3540726047
Category : Technology & Engineering
Languages : en
Pages : 825

Book Description
This volume comprises the communications presented at the ETC 11, the EUROMECH European Turbulence conference held in 2007 in Porto. The scientific committee has chosen the contributions out of the following topics: Acoustics of turbulent flows; Atmospheric turbulence; Control of turbulent flows; Geophysical and astrophysical turbulence; Instability and transition; Intermittency and scaling; Large eddy simulation and related techniques; MHD turbulence; Reacting and compressible turbulence; Transport and mixing; Turbulence in multiphase and non-Newtonian flows; Vortex dynamics and structure formation; Wall bounded flows.

Theories of Turbulence

Theories of Turbulence PDF Author: Martin Oberlack
Publisher: Springer
ISBN: 3709125642
Category : Science
Languages : en
Pages : 377

Book Description
The term "turbulence” is used for a large variety of dynamical phenomena of fluids in motion whenever the details of the flow appear to be random and average properties are of primary interest. Just as wide ranging are the theoretical methods that have been applied towards a better understanding of fluid turbulence. In this book a number of these methods are described and applied to a broad range of problems from the transition to turbulence to asymptotic turbulence when the inertial part of the spectrum is fully developed. Statistical as well as nonstatistical treatments are presented, but a complete coverage of the subject is not attempted. The book will be of interest to scientists and engineers who wish to familiarize themselves with modern developments in theories of turbulence. The fact that the properties of turbulent fluid flow are addressed from very different points of view makes this volume rather unique among presently available books on turbulence.