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Titlebook: Computational Methods for Fluid Dynamics; Joel H. Ferziger,Milovan Perić,Robert L. Street Textbook 2020Latest edition Springer Nature Swit

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Introduction to Numerical Methods,ossibilities and limitations of the computational approach are outlined. This is followed by a description of the components of a numerical solution method and their properties. Finally, a brief description of basic computational methods (finite difference, finite volume and finite element) is given.
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Turbulent Flows,eddy simulation and methods based on Reynolds-averaged Navier-Stokes equations. Some widely used models in the latter two approaches are described, including details related to boundary conditions. Examples of application of these approaches, including comparison of their performance, are presented.
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Finite Volume Methods,the analysis of discretization errors caused by interpolation and integral approximations. Finally, implementation of the various boundary conditions is discussed. The chapter closes with application of some of the basic methods to several examples using Cartesian grids.
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,Solution of the Navier–Stokes Equations: Part 1,approaches (the PISO algorithm, streamfunction-vorticity, and artificial compressibility) are also briefly described. The initial and boundary conditions for the Navier–Stokes equations and their implementation on Cartesian grids are also covered.
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