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Titlebook: IUTAM Symposium on Dynamics of Slender Vortices; Proceedings of the I E. Krause,K. Gersten Conference proceedings 1998 Springer Science+Bus

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書(shū)目名稱IUTAM Symposium on Dynamics of Slender Vortices
副標(biāo)題Proceedings of the I
編輯E. Krause,K. Gersten
視頻videohttp://file.papertrans.cn/461/460573/460573.mp4
叢書(shū)名稱Fluid Mechanics and Its Applications
圖書(shū)封面Titlebook: IUTAM Symposium on Dynamics of Slender Vortices; Proceedings of the I E. Krause,K. Gersten Conference proceedings 1998 Springer Science+Bus
描述The decision of the General Assembly of the International Union of Theoretical and Applied Mechanics to organize a Symposium on Dynamics of Slender Vortices was greeted with great enthusiasm. The acceptance of the proposal, forwarded by the Deutsches Komitee fiir Mechanik (DEKOMECH) signalized, that there was a need for discussing the topic chosen in the frame the IUTAM Symposia offer. Also the location of the symposium was suitably chosen: It was decided to hold the symposium at the RWTH Aachen, where, years ago, Theodore von Karman had worked on problems related to those to be discussed now anew. It was clear from the beginning of the planning, that the symposium could only be held in the von Karman-Auditorium ofthe Rheinisch-Westfalische Technische Hochschule Aachen, a building named after him. The symposium was jointly organized by the editors of this volume, strongly supported by the local organizing committee. The invitations of the scientific committee brought together scientists actively engaged in research on the dynamics of slender vortices. It was the aim of the committee to have the state of the art summarized and also to have the latest results of specific problems inv
出版日期Conference proceedings 1998
關(guān)鍵詞Layer; dynamics; flows; layers; numerical methods; simulation; vortices; fluid- and aerodynamics
版次1
doihttps://doi.org/10.1007/978-94-011-5042-2
isbn_softcover978-94-010-6117-9
isbn_ebook978-94-011-5042-2Series ISSN 0926-5112 Series E-ISSN 2215-0056
issn_series 0926-5112
copyrightSpringer Science+Business Media Dordrecht 1998
The information of publication is updating

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Recent Development in the Asymptotic Theory of Vortex Breakdown filament due to nonlocal self-induction and local curvature effects. Secondly, there is a nonlinear core flow, which produces local axisymmetric breakdown under suitable boundary and initial conditions. Both these aspects of slender vortex dynamics have been studied in the past using tools of match
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Self-Induced Motion of Helical Vortices of the formula for determination of the self-induced velocity of a helical vortex with a uniform vorticity distribution inside a core. A simple formula for the velocity, that permitted to fulfil its complete analysis, was derived for the first time with the help of an explicit separation of singula
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Coherent Structure Eduction in Wavelet-Forced Two-Dimensional Turbulent Flowsis done in wavelet space. We introduce a new eduction method for extracting coherent structures from two-dimensional turbulent flows. Using a nonlinear wavelet technique based on an objective universal threshold we separate the vorticity field into coherent structures and background flow. Both compo
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Optimized Vortex Element Schemes for Slender Vortex Simulationsicity field into spherically smoothed Lagrangian elements of overlapping cores, and transport of these elements along particle trajectories. The advantages of this approach stem from the Lagrangian discretization which naturally concentrates computational elements into regions of high vorticity, and
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Simulation of Vortex Ring Interaction domains. The algorithm is based on a pressure correction scheme, in which the Poisson equation for the pressure is solved with a conjugate gradient method with a preconditioning based on an incomplete lower-upper decomposition. The integration in time is carried out with an explicit Adams-Bashforth
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Large-Eddy Simulations of Longitudinal Vortices in Shear Flows-scale models presented in (Lesieur and Métais, 1996, .., ., and Lesieur, 1997, ., third updated and revised edition). In mixing layers perturbed upstream or initially by small-amplitude random perturbations, two types of flow patterns are obtained depending on the level of three-dimensionality of t
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Numerical Simulation of Nonlinear Interactions in Subsonic and Supersonic Free Shear Layersing to its instability and transition to turbulence play also an important role in other shear flows, such as jets and wakes. The dynamics of a compressible shear layer is an important part of numerous fluid dynamics problems, for example, noise generation, flow in gasdynamic lasers, astrophysical j
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