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- W1967826384 abstract "The Navier–Stokes hypersonic strong-interaction theory is presented for the flow of a viscous, heat conducting, compressible fluid past a very slender axisymmetric body, when the ratio of the radial thickness of the body to the radial thickness of the viscous region, produced and supported by the body, goes to zero. The fluid is assumed to be a perfect gas having constant specific heats,a constant Prandtl number of order unity, and viscosity coefficients varying as a power of the absolute temperature. Solutions are studied for the free stream Mach number, the free stream Reynolds number based on the body’s axial length, and a modified hypersonic viscous interaction parameter going to infinity. It is shown that, for a viscosity-temperature exponent, $omega $, less than one, five distinct layers span the region between the shock wave and the body. The leading approximations for the behavior of the flow in each of these five regions are analyzed, and it is found that an arbitrary body supports $3/ 4$-power viscous and shock layers." @default.
- W1967826384 created "2016-06-24" @default.
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- W1967826384 date "1970-07-01" @default.
- W1967826384 modified "2023-10-17" @default.
- W1967826384 title "Hypersonic Strong-Interaction Solutions for Flow Past a Very Slender Axisymmetric Body" @default.
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- W1967826384 doi "https://doi.org/10.1137/0119003" @default.
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