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- Hypersonic and High Temperature Gas Dynamics.
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Hypersonic and High Temperature Gas Dynamics
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Hypersonic and High-temperature Gas Dynamics - John David Anderson - Google книги
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Introduction to High-Temperature Superconductivity. High-temperature superconducting materials science and engineering. High Temperature Corrosion and Materials Applications. High-temperature superconductivity in cuprates. Vortices in high-temperature superconductors. High-Temperature Measurements of Materials. High Temperature Strain of Metals and Alloys.
Hypersonic and High Temperature Gas Dynamics / Edition 1
Recommend Documents. Hull R. Osgood, Jr. Your name. Close Send. High-Enthalpy Gasdynamics: Hypersonic flows with chemical reaction effects. Equilibrium flow. Stagnation point heating. This is a large and complex topic. Here, only equilibrium flow will be covered in any depth. The thermodynamics of equilibrium air will be presented without derivation and used to solve stagnation point flow.
Rarefied Gasdynamics: Collisionless flows. The newtonian free-molecular approximation. Application to high-altitude aerodynamics and the gasdynamics of satellite thrusters. Bird Chap. The ability to formulate and solve engineering problems 2a is emphasized in the homework assignments and the projects.
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The ability to communicate effectively in writing 2c is covered in the projects and homeworks which take the form of informal reports. The final project is orally presented to the class 2c. Professional conduct 2d , life-long learning 3 and society impact 4 are discussed by the instructor through anecdotal stories throughout the course. An attitude of life-long learning is explicitly encouraged by the open-ended assignments, which leave much to be explored in the future.
AAE Hypersonic Aerothermodynamics Description: Introduction to the aerodynamics of satellites and planetary reentry. Objectives include developing abilities to: Identify the critical physical phenomena in hypersonic and planetary-reentry flows Calculate pressure distributions for simple shapes using shock-expansion and newtonian theories.
Calculate forces and moments for these shapes Understand the phenomena of hypersonic viscous flow, and the methods available for analysis. Select and use simple computer codes for approximate analysis Appreciate the critical effect of chemistry in hypervelocity flows. Understand the basic physical phenomena Understand some of the basic phenomena in rarefied flows. Necessary Background: 1. Vector calculus and differential equations through PDEs 2.