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Titlebook: Separated Flows and Jets; IUTAM-Symposium, Nov V. V. Kozlov,A. V. Dovgal Conference proceedings 1991 Springer-Verlag, Berlin Heidelberg 199

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书目名称Separated Flows and Jets
副标题IUTAM-Symposium, Nov
编辑V. V. Kozlov,A. V. Dovgal
视频video
丛书名称IUTAM Symposia
图书封面Titlebook: Separated Flows and Jets; IUTAM-Symposium, Nov V. V. Kozlov,A. V. Dovgal Conference proceedings 1991 Springer-Verlag, Berlin Heidelberg 199
描述Separated flows and jets are closely linked in a variety of applications. They are of great importance in various fields of fluid mechanics including vehicle efficiency, technical branches concerned with gas/liquid flows, atmospheric effects on various constructions, etc. Knowledge of the physics of separated flows and jets and the development of reliable control techniques are prerequisite for future progress in the field. These aspects were in focus during the IUTAM-Symposium which was held in Novosibirsk, 9-13 July, 1990. This volume contains a selection of papers presenting recent results of theoretical and numerical studies as well as experimental work on separated flows and jets. The topics include sub- and supersonic, laminar and turbulent separation as well as organized structures in separated flows and jets. The reader will find here the state of the art and major trends for research in this field of aero-hydrodynamics.
出版日期Conference proceedings 1991
关键词Abgelöste Strömungen; Boundary Layer separation; Diffusor; Grenzschicht; Grenzschichttrennung; Jets; Separ
版次1
doihttps://doi.org/10.1007/978-3-642-84447-8
isbn_softcover978-3-642-84449-2
isbn_ebook978-3-642-84447-8
copyrightSpringer-Verlag, Berlin Heidelberg 1991
The information of publication is updating

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Break-up in Steady and Unsteady Separationyer equations; a finite-time break-up possible in any unsteady interactive boundary layer; and the absence of large-scale separation in turbulent flow. The aerodynamic implications for stall, intermittency, transition and turbulence effects are also emphasized.
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Self-Similar Separationide of a motion region appear which are bounded by conical surfaces. Particularly, problems on a vortex-source flow in free space and near a wall, multicell tornado models, swirling cosmic jets, suppression of the separation by magnetic field, and free convection are reported.
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including vehicle efficiency, technical branches concerned with gas/liquid flows, atmospheric effects on various constructions, etc. Knowledge of the physics of separated flows and jets and the development of reliable control techniques are prerequisite for future progress in the field. These aspect
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Analysis of Simulations of Topologically Changing Three-Dimensional Separated Flowsemporal-spatial numerical resolution requirements. We recall an invariant definition of vortices and show examples where sensitivity to initial conditions of separating shear layers exist and where (. → 0)-uniqueness problems occur in compressible flow simulations of steady, separated flows. Aspects
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Break-up in Steady and Unsteady Separationevelopments, which are very much inter-related, concern the following: a reversed-flow breakdown in the solution of the steady interacting boundary-layer equations; a finite-time break-up possible in any unsteady interactive boundary layer; and the absence of large-scale separation in turbulent flow
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On Goldstein’s Singularityo be a challenge for all theoreticians dealing with this fundamental phenomenon. In attempts to remove this singularity a profound analysis was developed recently in Ruban [2] as well as Stewartson, Smith & Kaups [3] with the objective to explain the formation of small bubbles on the leading edge of
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Marginal Separation Theoryn 1982 as applied to the problem of short separation bubbles appearing on the leading edge of a thin airfoil. Since that many authors used the theory in their investigations of the boundary layer separation phenomenon. The corresponding revue is given here. Attention is paid also to the problem of s
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