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Titlebook: Hypersonics; Volume 1 Defining th John J. Bertin,Roland Glowinski,Jacques Periaux Book 1989 Birkh?user Boston 1989

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書目名稱Hypersonics
副標(biāo)題Volume 1 Defining th
編輯John J. Bertin,Roland Glowinski,Jacques Periaux
視頻videohttp://file.papertrans.cn/431/430686/430686.mp4
叢書名稱Progress in Scientific Computing
圖書封面Titlebook: Hypersonics; Volume 1 Defining th John J. Bertin,Roland Glowinski,Jacques Periaux Book 1989 Birkh?user Boston 1989
描述Tbe task of defining the aerothermodynamic environment for a vehicle flying through the air at hypersonic speeds offers diverse challenges to the designer. He must integrate a wide variety of scientific and technical disciplines, blending mathematical modeling, computational methods, and experimental measurements. Many of the manned reentry vehicles are relatively blunt or fly at very high angles of attack (so that the drag is relatively large) and enter the atmosphere at a relatively low entry angle. As a result, the hypersonic deceleration occurs at very high altitudes. Because the conversion of kinetic energy to internal energy modes occurs in a low density environment, the flow-field chemistry is an im- portant consideration. Experiments on the U. S. Space Shuttle demonstrated the importance of nonequilibrium flow and surface catalycity on the heating to the vehicle. To determine the aerothermodynamic environment of other vehicles op- erating hypersonically at very high altitudes, e. g. , the Aero-Assisted Space Transfer Vehicle, the designer may have to consider viscous/inviscid interactions and the modeling of noncontinuum flows. Configurations that have a relatively high bal
出版日期Book 1989
版次1
doihttps://doi.org/10.1007/978-1-4684-9187-6
isbn_softcover978-1-4684-9189-0
isbn_ebook978-1-4684-9187-6
copyrightBirkh?user Boston 1989
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書目名稱Hypersonics影響因子(影響力)




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Non-Equilibrium Effects in High Speed Flows: Modeling and Experimentation,ation obtained by expansion of the species distribution function give modelizatons of typical non-equilibrium situations in collisional regimes at Euler and Navier-Stokes levels. Thus, kinetic models are presented and transport terms are computed. Applications to shocked flows and nozzle expansions
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Rarefied Gas Dynamics for Spacecraft,ns, going to higher altitudes would be accompanied by an increase in speed up to possibly orbital escape velocity. The reduction In the density would in itself alleviate the aerodynamic forces and heat fluxes that the vehicle would have to withstand. However this would be counteracted by the rising
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