DocumentCode
2928970
Title
A Three-Dimensional Interferometric CT Measurement and Visualization for High-Speed Flow Induced by Shock Waves Discharged from Open Ends
Author
Ota, Masanori ; Koga, Toshihiro ; Toyoda, Kazuhiro ; Maeno, Kazuo
Author_Institution
Graduate student, Graduate School of Science and Technology, Chiba University. Email address: ota@graduate.chiba-u.jp
fYear
2005
fDate
2005
Firstpage
17
Lastpage
23
Abstract
Three-dimensional flow phenomena have been observed in a shock tube experiment for shock waves and vortices by using an interferometric CT (Computed Tomography) technique with a N2 pulse laser. A model with small duct, which has a pair of circular open ends, is introduced in a test section of diaphragmless shock tube, and can be rotated around its central axis to change the observation angle. The projection image of density distribution for each observation angle is obtained by using a fixed Mach-Zehnder interferometer. Three-dimensional density distribution is reconstructed from these projection images. The shock Mach number is 2.3 in nitrogen gas of 19.4kPa initial pressure at the exits of the open ends. The resultant 3-D density flow fields are illustrated by several imaging technique to clarify 3-D features of shock waves, vortices, and their mutual interactions. A computational fluid dynamics (CFD) simulation is also applied to the 3-D flow fields. The CFD results can represent density and another properties in flow fields, and these properties are useful for identifying the phenomena. The mutual validation between the experimental CT density results and these CFD results is discussed. Three-dimensional features of flow fields are investigated in detail by analyzing the experimental CT results with CFD results.
Keywords
Computational fluid dynamics; Computed tomography; Ducts; Electric shock; Fluid flow measurement; Laser modes; Optical pulses; Shock waves; Testing; Visualization;
fLanguage
English
Publisher
ieee
Conference_Titel
Instrumentation in Aerospace Simulation Facilities, 2005. iciasf '05. 21st International Congress on
Print_ISBN
0-7803-9096-2
Type
conf
DOI
10.1109/ICIASF.2005.1569899
Filename
1569899
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