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Titlebook: Eddy Structure Identification in Free Turbulent Shear Flows; Selected Papers from J. P. Bonnet,M. N. Glauser Book 1993 Springer Science+Bus

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楼主: affront
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Feuerungen und Dampfkesselwirtschaft,n for turbulence research at present. This belief is based on the recent developments in the analysis understanding and description of turbulence, and the most appropriate techniques needed to study and calculate turbulent flows. These are summarised here as 6 statements (with some references to papers where these points have been explained).
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https://doi.org/10.1007/978-3-663-20192-2rent patterns from chaotic turbulent flows and what we hope to do with the information if and when we have it. If we regard the scientific study of turbulent flow as beginning with the work of Osborne Reynolds and his mean value equations for mean velocity and mean turbulent kinetic energy, most wor
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,Fette und Öle [E. fats and oils],asurement technology for the 3-D instantaneous vorticity field we rely on direct numerical simulation of the Navier-Stokes equations using spectral methods in an 128. periodic cube. Recognizing from our study of the vortex reconnection mechanism that vortex lines associated with coherent structures
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Einrichtung des chemischen Laboratoriums,agrangian-mean equations of Andrews & Mclntyre and is treated as a wave mean-flow interaction. Specifically, the wave field simultaneously acts both to distort the mean flow from its laminar form and account for turbulence fluctuations. Both spanwise-independent two-dimensional and three-dimensional
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Einrichtung des chemischen Laboratoriums, shear flows using multiple X-wire probes. Basic ideas and procedures of the technique are described, and several examples of the results are presented. Advantages and limitations of the technique are also discussed from an experimental point of view.
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Hilfsmittel beim Aufbau von Apparaturen,e we educe dominant CS. A numerically simulated spatially evolving wake of a flat plate is used as the database, and the inflow condition for the simulated wake includes random velocity perturbations which emulate turbulent conditions at a plate exit in the laboratory. In addition to previously educ
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