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NASA NTRS · 19900036021

Structure and evolution of small-amplitude intermediate shock waves

Abstract

A simplified set of equations is derived that approximates the magnetohydrodynamic (MHD) Navier-Stokes equations for weakly nonlinear disturbances whose speeds are close to the MHD intermediate speed. Its shock structure solutions are then examined. The fast and slow shock solutions are uniquely specified by their Rankine-Hugoniot relations. However, the intermediate shock solutions, which are not unique, are characterized by the integral through the shock of the noncoplanar component of the magnetic field. For situations in which this integral is conserved, the Riemann problem is well defined and predicts the evolution of intermediate shocks. This analysis is substantiated by numerical computations.

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BibTeXRIS

Kennel, C. F., Blandford, R. D., Wu, C. C.. 1990-02-01. Structure and evolution of small-amplitude intermediate shock waves. https://ntrs.nasa.gov/citations/19900036021

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