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NASA NTRS · 19850058627

Three-dimensional unsteady Euler equations solutions on dynamic grids

Abstract

A method is presented for solving the three-dimensional unsteady Euler equations on dynamic grids based on flux vector splitting. The equations are cast in curvilinear coordinates and a finite volume discretization is used for handling arbitrary geometries. The discretized equations are solved using an explicit upwind second-order predictor corrector scheme that is stable for a CFL of 2. Characteristic variable boundary conditions are developed and used for unsteady impermeable surfaces and for the far-field boundary. Dynamic-grid results are presented for an oscillating air-foil and for a store separating from a reflection plate. For the cases considered of stores separating from a reflection plate, the unsteady aerodynamic forces on the store are significantly different from forces obtained by steady-state aerodynamics with the body inclination angle changed to account for plunge velocity.

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BibTeXRIS

Belk, D. M., Janus, J. M., Whitfield, D. L.. 1985-07-01. Three-dimensional unsteady Euler equations solutions on dynamic grids. https://ntrs.nasa.gov/citations/19850058627

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