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Titlebook: Computational Fluid Dynamics; Selected Topics Dieter Leutloff,Ramesh C. Srivastava Book 1995 Springer-Verlag Berlin Heidelberg 1995 Boltzma

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書目名稱Computational Fluid Dynamics
副標(biāo)題Selected Topics
編輯Dieter Leutloff,Ramesh C. Srivastava
視頻videohttp://file.papertrans.cn/233/232292/232292.mp4
圖書封面Titlebook: Computational Fluid Dynamics; Selected Topics Dieter Leutloff,Ramesh C. Srivastava Book 1995 Springer-Verlag Berlin Heidelberg 1995 Boltzma
描述Computational methods and modelling is of growing importance in fundamental science as well as in applications in industry and in environmental research. In this topical volume the readers find important contributions in the field of turbulent boundary layers, the Tsunami problem, group invariant solution of hydrodynamic equations, non-linear waves, modelling of the problem of evaporation-condensation, the exact solution of discrete models of the Boltzmann equation etc. The book addresses researchers and engineers both in the mechanical sciences and in scientific computing.
出版日期Book 1995
關(guān)鍵詞Boltzmann equation; Boltzmann-Gleichung; Kondensations- und Verdampfungsproze?; Numerische Verfahren de
版次1
doihttps://doi.org/10.1007/978-3-642-79440-7
isbn_softcover978-3-642-79442-1
isbn_ebook978-3-642-79440-7
copyrightSpringer-Verlag Berlin Heidelberg 1995
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Numerical Modelling of Two- and Three- Dimensional External and Internal Unsteady Incompressible Flity of coupling the heat conduction equation by the Boussinesq approximation. The solution methods will be applied i) to the investigation of a crystal melt flow caused by free and forced convection as an internal flow problem, and ii) to the full 3d flow around a circular cylinder as a base for LES
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New Potentialities of Computational Experiment in Tsunami Problem,turbation (Tsunami source) resulting from an underwater earthquake, volcano eruption or another similar large-scale hazard, propagation of the wave in deep ocean and its transformation in the coastal zone, interaction with floating and fixed objects and its running up on the shore.
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Computation of Viscous Transonic Flow Around the F5 Wing, is described by an algebraic eddy viscosity model. Boundary-conforming O-O type meshes are generated by the transfinite interpolation method. The finite-volume technique is employed for spatial discretization using two cells in each computational coordinate direction, one more than the conventional
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A Time-Dependent Space Marching Algorithm for Three-Dimensional PNS Equations,nt in Computational Fluid Dynamics. Up to now there exist two different approaches to the simulation of compressible viscous flow. One of them is to integrate directly the full Navier-Stokes equations with the time-dependent method [1], another is to solve the Simplified Navier Stokes equations usin
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New Potential-Field Properties of General Laminar and Turbulent Motions of Newtonian Fluids,lows. The Navier Stokes equation is completed by the balance of mechanical energy and by fundamental laws of thermodynamics of non-equilibrium. A new detailed review of some terms of the Navier Stokes Equation on the base of these principles leads to some new surprising field properties. For example
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Boundary Layer Turbulence and the Control by Suction,cult to understand. This paper is an attempt at constituting an easy-to-comprehend story about the turbulent boundary layer on the flat plate out of the basic experimental data on the flow and the nature of the dissipative field from the thermodynamics of irreversible processes. The behavior of the
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