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Titlebook: Computational Fluid Dynamics and Reacting Gas Flows; Bjorn Engquist,Andrew Majda,Mitchell Luskin Conference proceedings 1988 Springer-Verl

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O.I. Aven,E.G. Coffman,Y.A. KoganWe present in this paper a fairly general mathematical analysis of the vortex method of approximation of the Euler equations for an incompressible fluid flow. We also discuss some recent methods of numerical approximation of viscous terms using the vortex method.
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Mathematics and Its ApplicationsWe give an overview of some recent theoretical and computational results for streamline diffusion finite element methods applied to the incompressible Navier-Stokes equations with small viscosity and to some nonlinear hyperbolic conservation laws modelling compressible flow.
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0940-6573 shop which was an integral part of the 1986-87 IMA program on SCIENTIFIC COMPUTATION. We are grateful to the Scientific Committee: Bjorn Engquist (Chairman), Roland Glowinski, Mitchell Luskin and Andrew Majda for planning and implementing an exciting and stimulating year-long program. We especially
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https://doi.org/10.1007/978-0-585-27373-0f motion. There are two ways to suppress the fast waves. One can prepare the initial data such that the fast waves are not excited or can change the equations such that the fast waves are not present or have been slowed down. In this paper we shall discuss some of the mathematical and numerical difficulties of these procedures.
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Reliability Analysis of Offshore Structures, case we get instability to short waves, ill-posedness, and, in the former, transonic flow. The two types of change are related. The regularizing effect of an effective Newtonian viscosity and the physical origins of viscosity are briefly reviewed.
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Ana Bela Cruzeiro,Evelina Shamarova change of angular velocity; flows in bifurcated pipes, and finally, vortical flows in cylinders of piston engines. Interpretation of the characteristic flow phenomena in comparison with experimental data is emphasized in favour of the description of integration methods.
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