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Titlebook: Recent Advances in Computational Fluid Dynamics; Proceedings of the U C. C. Chao,S. A. Orszag,W. Shyy Conference proceedings 1989 Springer-

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书目名称Recent Advances in Computational Fluid Dynamics
副标题Proceedings of the U
编辑C. C. Chao,S. A. Orszag,W. Shyy
视频video
丛书名称Lecture Notes in Engineering
图书封面Titlebook: Recent Advances in Computational Fluid Dynamics; Proceedings of the U C. C. Chao,S. A. Orszag,W. Shyy Conference proceedings 1989 Springer-
描述.From the preface:. Fluid dynamics is an excellent example of how recent advances in computational tools and techniques permit the rapid advance of basic and applied science. The development of computational fluid dynamics (CFD) has opened new areas of research and has significantly supplemented information available from experimental measurements. Scientific computing is directly responsible for such recent developments as the secondary instability theory of transition to turbulence, dynamical systems analyses of routes to chaos, ideas on the geometry of turbulence, direct simulations of turbulence, three-dimensional full-aircraft flow analyses, and so on. We believe that CFD has already achieved a status in the tool-kit of fluid mechanicians equal to that of the classical scientific techniques of mathematical analysis and laboratory experiment.
出版日期Conference proceedings 1989
关键词Dissipation; Experiment; Navier-Stokes equation; Norm; Renormalization group; Simulation; computational fl
版次1
doihttps://doi.org/10.1007/978-3-642-83733-3
isbn_softcover978-3-540-50872-4
isbn_ebook978-3-642-83733-3Series ISSN 0176-5035
issn_series 0176-5035
copyrightSpringer-Verlag Berlin, Heidelberg 1989
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An Improved Upwind Scheme for the Euler Equations,igenvalues to control spatial differencing. A continuous transition function is introduced to replace the discontinuity when eigenvalue changes sign. The introduction of the continuous transition function eliminates the possibility of capturing an expansion shock at sonic points due to the discontin
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A Unified Pressure Correction Algorithm for Computing Complex Fluid Flows,nolds numbers in complex geometries. The algorithm is based on the pressure correction method, combined treatment of the Cartesian and contravariant velocity components on arbitrary coordinates, and second-order accurate discretization. A number of two- and three-dimensional flow problems including
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Computations of Taylor Vortex Flows Using Multigrid Continuation Methods,rs are considered, and the results agree well with experiments. New solutions are found in the infinite cylinder case and these, surprisingly, may help in understanding some experimental results obtained in relatively short cylinders. The numerical method proved to be efficient and reliable so that
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A Variational Finite Element Method for Compressible Navier-Stokes Flows,Clebsch transformation of the velocity vector and a set of governing equations in terms of Lagrangian multipliers and entropy are derived. This mathematical model is equivalent to the classic full Navier-Stokes equations in terms of primitive variables. It provides an unified solution scheme for pot
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