Finite Volume Methods For Incompressible Navier Stokes Equations On Collocated Grids With Nonconformal Interfaces PDF Download

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DTU Wind Energy PhD.

DTU Wind Energy PhD.
Author: Dmitry Kolmogorov
Publisher:
Total Pages:
Release: 2014
Genre:
ISBN:

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Navier—Stokes Equations

Navier—Stokes Equations
Author: Roger Temam
Publisher: Elsevier
Total Pages: 539
Release: 2016-06-03
Genre: Mathematics
ISBN: 1483256855

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Navier-Stokes Equations: Theory and Numerical Analysis focuses on the processes, methodologies, principles, and approaches involved in Navier-Stokes equations, computational fluid dynamics (CFD), and mathematical analysis to which CFD is grounded. The publication first takes a look at steady-state Stokes equations and steady-state Navier-Stokes equations. Topics include bifurcation theory and non-uniqueness results, discrete inequalities and compactness theorems, existence and uniqueness theorems, discretization of Stokes equations, existence and uniqueness for the Stokes equations, and function spaces. The text then examines the evolution of Navier-Stokes equations, including linear case, compactness theorems, alternate proof of existence by semi-discretization, and discretization of the Navier-Stokes equations. The book ponders on the approximation of the Navier-Stokes equations by the projection and compressibility methods; properties of the curl operator and application to the steady-state Navier-Stokes equations; and implementation of non-conforming linear finite elements. The publication is a valuable reference for researchers interested in the theory and numerical analysis of Navier-Stokes equations.


A Finite Volume Method for Solving the Navier-Stokes Equations on Composite Overlapping Grids

A Finite Volume Method for Solving the Navier-Stokes Equations on Composite Overlapping Grids
Author:
Publisher:
Total Pages: 19
Release: 1990
Genre:
ISBN:

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The simulation of compressible fluid flows describing engineering applications using finite difference or finite volume methods is complicated by both the difficulty in representing complex geometries using rectangular grids and by the memory size and speed of modern supercomputers. The composite overlapping grid approach can be used to represent complicated geometries using a set of logically rectangular grids, thus allowing the use of finite difference or finite volume methods to approximate the partial differential equations. This approach can also be used to accomplish local mesh refinement for the purpose of resolving locally detailed behavior in the flow fields. This paper discusses the composite overlapping grid method, in particular presenting the modifications necessary to the standard finite volume approach in order to use these grids. Computed examples from compressible hypersonic flow are present as well. 15 refs., 4 figs.