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Increased accuracy and efficiency in...
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Bowers, Abigail L.
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Increased accuracy and efficiency in finite element computations of the Leray-deconvolution model of turbulence.
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Increased accuracy and efficiency in finite element computations of the Leray-deconvolution model of turbulence./
Author:
Bowers, Abigail L.
Description:
26 p.
Notes:
Source: Masters Abstracts International, Volume: 48-05, page: 3031.
Contained By:
Masters Abstracts International48-05.
Subject:
Applied Mathematics. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1475498
ISBN:
9781109746259
Increased accuracy and efficiency in finite element computations of the Leray-deconvolution model of turbulence.
Bowers, Abigail L.
Increased accuracy and efficiency in finite element computations of the Leray-deconvolution model of turbulence.
- 26 p.
Source: Masters Abstracts International, Volume: 48-05, page: 3031.
Thesis (M.S.)--Clemson University, 2010.
This thesis develops, analyzes and tests a finite element method for approximating solutions to the Leray-deconvolution regularization of the Navier-Stokes equations. The scheme combines three ideas in order to create an accurate and effective algorithm: the use of an incompressible filter, a linearization that decouples the velocity-pressure system from the filtering and deconvolution operations, and a stabilization that works well with the linearization. A rigorous and complete numerical analysis of the scheme is given, and numerical experiments are presented that show clear advantages of the scheme.
ISBN: 9781109746259Subjects--Topical Terms:
1669109
Applied Mathematics.
Increased accuracy and efficiency in finite element computations of the Leray-deconvolution model of turbulence.
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26 p.
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Source: Masters Abstracts International, Volume: 48-05, page: 3031.
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Adviser: Leo G. Rebholz.
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Thesis (M.S.)--Clemson University, 2010.
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This thesis develops, analyzes and tests a finite element method for approximating solutions to the Leray-deconvolution regularization of the Navier-Stokes equations. The scheme combines three ideas in order to create an accurate and effective algorithm: the use of an incompressible filter, a linearization that decouples the velocity-pressure system from the filtering and deconvolution operations, and a stabilization that works well with the linearization. A rigorous and complete numerical analysis of the scheme is given, and numerical experiments are presented that show clear advantages of the scheme.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1475498
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