DocumentCode :
2772148
Title :
Diagnostics by electron beam fluorescence in hypersonics
Author :
Mohamed, Ajmal Khan ; Pot, Thierry ; Chanetz, Bruno
Author_Institution :
ONERA, Chatillon, France
fYear :
1995
fDate :
18-21 Jul 1995
Abstract :
Electron beam fluorescence is a well established technique to perform local and non intrusive measurements of density, vibrational and rotational temperatures and velocity in a low density flow of nitrogen or air (⩽1016 molecules.cm-3). This paper describes two recent applications (flow visualization and velocimetry) in low density hypersonic wind tunnels using a multi-purpose electron gun. Flow visualization, obtained by sweeping the electron beam to illuminate a sheet in the flow, is useful to follow density variations and expose shock waves. It is here applied to study interferences between shock waves issued from two models placed in a Mach 10 flow. Velocity measurements have also been carried out by using a pulsed electron beam to tag a flow with afterglowing plasma columns for optical time of flight detection
Keywords :
electron beam applications; electron guns; flow visualisation; fluorescence; hypersonic flow; shock waves; wind tunnels; Mach 10 flow; afterglowing plasma columns; density measurement; density variations; electron beam fluorescence; flow velocity measurement; flow visualization; hypersonics; low density flow; low density hypersonic wind tunnels; multi-purpose electron gun; optical time of flight detection; pulsed electron beam; rotational temperature measurement; shock wave interference; shock waves; vibrational temperature measurement; Density measurement; Electron beams; Fluid flow measurement; Fluorescence; Performance evaluation; Rotation measurement; Shock waves; Velocity measurement; Vibration measurement; Visualization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation in Aerospace Simulation Facilities, 1995. ICIASF '95 Record., International Congress on
Conference_Location :
Wright-Patterson AFB, OH
Print_ISBN :
0-7803-2088-3
Type :
conf
DOI :
10.1109/ICIASF.1995.519120
Filename :
519120
Link To Document :
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