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Titlebook: New Results in Numerical and Experimental Fluid Mechanics IV; Contributions to the Christian Breitsamter,Boris Laschka,Reinhard Hilbi Confe

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书目名称New Results in Numerical and Experimental Fluid Mechanics IV
副标题Contributions to the
编辑Christian Breitsamter,Boris Laschka,Reinhard Hilbi
视频video
概述Broad overview about ongoing work and results in Aerospace in Germany.Collected results of project work in numerical and experimental aerodynamics and fluidmechanics for aerospace and other applicatio
丛书名称Notes on Numerical Fluid Mechanics and Multidisciplinary Design
图书封面Titlebook: New Results in Numerical and Experimental Fluid Mechanics IV; Contributions to the Christian Breitsamter,Boris Laschka,Reinhard Hilbi Confe
描述.This volume contains 59 papers presented at the 13th Symposium of STAB (German Aerospace Aerodynamics Association). In this association, all those German scientists and engineers from universities, research establishments and industry are involved who are doing research and project work in numerical and experimental fluid mechanics and aerodynamics, mainly for aerospace but also in other applications. Many of the contributions give results from federal and European-Union sponsored projects. The volume gives a broad overview of the ongoing work in this field in Germany. Covered are flow problems of high and low aspect-ratio wings and bluff bodies, laminar flow control and transition, hypersonic flows, transition and fluid mechanical modelling, LES and DNS, numerical simulation, aeroelasticity, measuring techniques and propulsion flows..
出版日期Conference proceedings 2004
关键词Aerodynamic Experimental Techniques; Aerodynamic Projects; Aerodynamics; Analytical Methods; Numerical M
版次1
doihttps://doi.org/10.1007/978-3-540-39604-8
isbn_softcover978-3-642-53546-8
isbn_ebook978-3-540-39604-8Series ISSN 1612-2909 Series E-ISSN 1860-0824
issn_series 1612-2909
copyrightSpringer-Verlag Berlin Heidelberg 2004
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Incorporation of an Actuator Disc for Lattice Wing Modelling in an unstructured Navier-Stokes Solverce wing as a function of its geometrical characteristics. The numerical results obtained for a lattice wing alone are compared with experimental data for different Mach numbers and angles of attack in order to validate the method.
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Large Transport Aircraft Wake Vortex Affected by Vortex Deviceswnstream of the model. Results obtained include velocity, vorticity and turbulence intensity fields. The measured data are evaluated in order to establish and test possible wake vortex strength alleviation strategies.
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Numerical Study of Four-Vortex Aircraft Wakes a strong inner vortex pair. The investigation shows that a strong inner pair is necessary for the instability to cause a large increase of vortex radii of the outer vortex pair. This increase in turn leads to a rapid decay of rolling moment.
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Analysis of the Oblique Flying Wing Concept’s Aerodynamic Potential by Means of Parameterization anderties of these geometries have been calculated with a higher order panel method. A parallel genetic algorithm has been developed and applied to determine geometries with optimized lift to drag ratios under realistic constraints concerning the total aircraft size and the available cabin space.
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Integrated Design of Installed Engine Nacelles Using an Inverse Design Methodod is based on an iterative residual-correction type approach and attempts to generate a geometry which satisfies a user-prescribed target pressure distribution. Results are presented for the inverse design of isolated and wing-mounted engine nacelles under consideration of the pylon.
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Conference proceedings 2004rman scientists and engineers from universities, research establishments and industry are involved who are doing research and project work in numerical and experimental fluid mechanics and aerodynamics, mainly for aerospace but also in other applications. Many of the contributions give results from 
发表于 2025-3-23 08:30:39 | 显示全部楼层
1612-2909 namics and fluidmechanics for aerospace and other applicatio.This volume contains 59 papers presented at the 13th Symposium of STAB (German Aerospace Aerodynamics Association). In this association, all those German scientists and engineers from universities, research establishments and industry are
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