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Turbulence Nature and the Inverse Problem - L. N. Pyatnitsky
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L. N. Pyatnitsky:

Turbulence Nature and the Inverse Problem - pocketboek

2010, ISBN: 9048184800

[EAN: 9789048184804], Neubuch, [PU: Springer Netherlands Okt 2010], EXPERIMENT; LASER; POTENTIAL; BOUNDARYLAYER; HYDRODYNAMICEQUATIONS; STOCHASTIZATION; TAR; TURBULENTFLOW; TURBULENTFLUCT… Meer...

NEW BOOK. Verzendingskosten: EUR 25.02 BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Germany [57449362] [Rating: 4 (von 5)]
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L. N. Pyatnitsky:

Turbulence Nature and the Inverse Problem - pocketboek

2010, ISBN: 9048184800

[EAN: 9789048184804], Neubuch, [SC: 35.89], [PU: Springer Netherlands], EXPERIMENT; LASER; POTENTIAL; BOUNDARYLAYER; HYDRODYNAMICEQUATIONS; STOCHASTIZATION; TAR; TURBULENTFLOW; TURBULENTF… Meer...

NEW BOOK. Verzendingskosten: EUR 35.89 AHA-BUCH GmbH, Einbeck, Germany [51283250] [Rating: 5 (von 5)]
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Turbulence Nature and the Inverse Problem - L. N. Pyatnitsky
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L. N. Pyatnitsky:
Turbulence Nature and the Inverse Problem - pocketboek

2010

ISBN: 9048184800

[EAN: 9789048184804], Neubuch, [PU: Springer Netherlands], EXPERIMENT; LASER; POTENTIAL; BOUNDARYLAYER; HYDRODYNAMICEQUATIONS; STOCHASTIZATION; TAR; TURBULENTFLOW; TURBULENTFLUCTUATIONS, … Meer...

NEW BOOK. Verzendingskosten: EUR 35.89 AHA-BUCH GmbH, Einbeck, Germany [51283250] [Rating: 5 (von 5)]
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Pyatnitsky, L. N.:
Turbulence Nature and the Inverse Problem - pocketboek

2010, ISBN: 9048184800

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Softcover reprint of hardcover 1st ed. 2009 Kartoniert / Broschiert Klassische Mechanik, Optische Physik, Statistische Physik, Ingenieurswesen, Maschinenbau allgemein, Angewandte Optik,… Meer...

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L. N. Pyatnitsky:
Turbulence Nature and the Inverse Problem - pocketboek

ISBN: 9789048184804

Paperback, [PU: Springer], This book defines the turbulence inverse problem and offers a solution technique. It also explains normal burning transition, and the turbulence inverse problem… Meer...

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Turbulence Nature and the Inverse Problem

Hydrodynamic equations well describe averaged parameters of turbulent steady flows, at least in pipes where boundary conditions can be estimated. The equations might outline the parameters fluctuations as well, if entry conditions at current boundaries were known. This raises, in addition, the more comprehensive problem of the primary perturbation nature, noted by H.A. Lorentz, which still remains unsolved. Generally, any flow steadiness should be supported by pressure waves emitted by some external source, e.g. a piston or a receiver. The wave plane front in channels quickly takes convex configuration owing to Rayleigh's law of diffraction divergence. The Schlieren technique and pressure wave registration were employed to investigate the wave interaction with boundary layer, while reflecting from the channel wall. The reflection induces boundary-layer local separation and following pressure rapid increase within the perturbation zone. It propagates as an acoustic wave packet of spherical shape, bearing oscillations of hydrodynamic parameters. Superposition of such packets forms a spatio-temporal field of oscillations fading as 1/r. This implies a mechanism of the turbulence. Vorticity existing in the boundary layer does not penetrate in itself into potential main stream. But the wave leaving the boundary layer carries away some part of fluid along with frozen-in vorticity. The vorticity eddies form another field of oscillations fading as 1/r2. This implies a second mechanism of turbulence. Thereupon the oscillation spatio-temporal field and its randomization development are easy computed. Also, normal burning transition into detonation is explained, and the turbulence inverse problem is set and solved as applied to plasma channels created by laser Besselian beams.

Gedetalleerde informatie over het boek. - Turbulence Nature and the Inverse Problem


EAN (ISBN-13): 9789048184804
ISBN (ISBN-10): 9048184800
Gebonden uitgave
pocket book
Verschijningsjaar: 2010
Uitgever: Springer-Verlag GmbH
216 Bladzijden
Gewicht: 0,334 kg
Taal: eng/Englisch

Boek bevindt zich in het datenbestand sinds 2011-06-10T08:32:24+02:00 (Amsterdam)
Detailpagina laatst gewijzigd op 2024-01-20T09:26:05+01:00 (Amsterdam)
ISBN/EAN: 9789048184804

ISBN - alternatieve schrijfwijzen:
90-481-8480-0, 978-90-481-8480-4
alternatieve schrijfwijzen en verwante zoekwoorden:
Titel van het boek: first course turbulence, nature, problem


Gegevens van de uitgever

Auteur: L. N. Pyatnitsky
Titel: Fluid Mechanics and Its Applications; Turbulence Nature and the Inverse Problem
Uitgeverij: Springer; Springer Netherland
197 Bladzijden
Verschijningsjaar: 2010-10-28
Dordrecht; NL
Gedrukt / Gemaakt in
Taal: Engels
106,99 € (DE)
109,99 € (AT)
118,00 CHF (CH)
POD
XVI, 197 p.

BC; Hardcover, Softcover / Physik, Astronomie/Mechanik, Akustik; Klassische Mechanik; Verstehen; Experiment; Laser; Potential; boundary layer; hydrodynamic equations; stochastization; tar; turbulent flow; turbulent fluctuations; Classical Mechanics; Acoustics; Models of Computation; Elementary Particles, Quantum Field Theory; Laser; Technology and Engineering; Wellenmechanik (Vibration und Akustik); Theoretische Informatik; Teilchen- und Hochenergiephysik; Laserphysik; Ingenieurswesen, Maschinenbau allgemein; BB; EA

The turbulence problem.- Fluid motion.- Distribution of parameters in viscous flow.- Perturbations in viscous flow.- Perturbation in channels.- Spatio-temporal field of perturbations in channels.- Evolution of velocity oscillation field.- Experimental substantiation of turbulence wave model.- Transition from normal combustion to detonation.- An inverse problem of turbulence.
Origin of primary perturbation in turbulent flows. Nature Two mechanisms of turbulence Technique for computing spacio-temporal field of turbulent flow parameter oscillations Technique for numerical study of randomization process of oscillating parameters Step-by-step explanation of slow combustion transition into detonation The turbulence inverse problem definition and solution technique

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