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Experimental analysis of high-speed helium jet flow using four-dimensional digital speckle tomography
Authors:Han Seo Ko  Koh Ikeda  Masaaki Ishikawa  Koji Okamoto  Yong-Jae Kim
Affiliation:(1) School of Mechanical Engineering, Sungkyunkwan University, 300 ChunChun-Dong, JangAn-Gu, Suwon, 440-746 KyungGi-Do, Korea;(2) Ibaraki College of Technology, Ibaraki, Japan;(3) Department of Mechanical Engineering, The University of Ryukyus, Okinawa, Japan;(4) Department of Quantum Engineering and Systems Science, University of Tokyo, Tokyo, Japan
Abstract:A high-speed and initial helium jet flow has been analyzed by a developed four-dimensional digital speckle tomography. Multiple high-speed cameras have been used to capture movements of speckles in multiple angles of view simultaneously because a shape of a nozzle for the jet flow is asymmetric and the initial jet flow is fast and unsteady. The speckle movements between no flow and helium jet flow from the asymmetric nozzle controlled by a solenoid valve have been obtained by a cross-correlation tracking method so that those distances can be transferred to deflection angles of laser rays for density gradients. The four-dimensional density fields for the high-speed helium jet flow have been reconstructed from the deflection angles by a developed real-time tomography method.
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