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Electron beam-driven MHD for the RDHWT/MARIAH II hypersonic wind tunnel
Gloyd A. Simmons
, Gordon L. Nelson
, Jean Luc Gambier
, Sergey O. Macheret
, Mikhail N. Shneider
, Ronald J. Lipinski
, Kim W. Reed
Mechanical & Aerospace Engineering
Princeton University
Research output
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Contribution to conference
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Paper
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peer-review
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Dive into the research topics of 'Electron beam-driven MHD for the RDHWT/MARIAH II hypersonic wind tunnel'. Together they form a unique fingerprint.
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Keyphrases
Magnetohydrodynamics
100%
Electron Beam
100%
Hypersonic Wind Tunnel
100%
Beam Driven
100%
Operating Point
28%
Dynamic Pressure
28%
High Performance
14%
Magnetic Field Lines
14%
Thermal Energy
14%
Non-equilibrium
14%
Design Criteria
14%
Shock
14%
Ultra-high Pressure
14%
Electrical Conductivity
14%
Atmospheric Pressure
14%
Hypersonic
14%
Entropy Condition
14%
Flight Condition
14%
Sidewall
14%
Free Stream
14%
Beam Window
14%
Air Test
14%
Oblique Shock
14%
Nozzle Flow
14%
High-pressure Air
14%
Stream Condition
14%
Point of Testing
14%
Secondary Ion Emission
14%
Air Supply System
14%
Test Capability
14%
Engineering
Magnetohydrodynamics
100%
Tunnel
100%
Operating Point
28%
Dynamic Pressure
28%
Duct
28%
Engineering
14%
Enabling Technology
14%
Nonequilibrium
14%
Design Criterion
14%
Supply System
14%
Flight Condition
14%
Side Wall
14%
Magnetic Field Line
14%
Test Environment
14%
Flow in Nozzles
14%
Oblique Shock
14%
Air Supply
14%
Free-Stream Condition
14%
Tunnel Research
14%
Thermal Energy
14%
Electrical Conductivity
14%
Atmospheric Pressure
14%
Physics
Magnetohydrodynamics
100%
Hypersonics
100%
Wind Tunnels
100%
Electron Beam
100%
Dynamic Pressure
28%
Magnetic Field
14%
Enthalpy
14%
Atmospheric Pressure
14%
Nozzle Flow
14%
Free Flow
14%
Electrical Resistivity
14%