Published July 1988 | Version v1
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Semi-discrete approximations to nonlinear systems of conservation laws; consistency and L(infinity)-stability imply convergence. Final report

Description

A convergence theory for semi-discrete approximations to nonlinear systems of conservation laws is developed. It is shown, by a series of scalar counter-examples, that consistency with the conservation law alone does not guarantee convergence. Instead, a notion of consistency which takes into account both the conservation law and its augmenting entropy condition is introduced. In this context it is concluded that consistency and L(infinity)-stability guarantee for a relevant class of admissible entropy functions, that their entropy production rate belongs to a compact subset of H(loc)sup -1 (x,t). One can now use compensated compactness arguments in order to turn this conclusion into a convergence proof. The current state of the art for these arguments includes the scalar and a wide class of 2 x 2 systems of conservation laws. The general framework of the vanishing viscosity method is studied as an effective way to meet the consistency and L(infinity)-stability requirements. How this method is utilized to enforce consistency and stability for scalar conservation laws is shown. In this context we prove, under the appropriate assumptions, the convergence of finite difference approximations (e.g., the high resolution TVD and UNO methods), finite element approximations (e.g., the Streamline-Diffusion methods) and spectral and pseudospectral approximations (e.g., the Spectral Viscosity methods)

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS, PC A04/MF A01.

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Additional details

Publishing Information

Imprint Pagination
63 p.
Report number
N--88-26157

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
20038214
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Resource subtype / Literary indicator
Numerical Data, Progress Report
Descriptors DEI
CONSERVATION LAWS; CONVERGENCE; DIFFERENTIAL EQUATIONS; FINITE ELEMENT METHOD; PROGRESS REPORT; SCALARS; THEORETICAL DATA
Descriptors DEC
DATA; EQUATIONS; INFORMATION; NUMERICAL DATA; NUMERICAL SOLUTION

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