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Please use this identifier to cite or link to this item: http://hdl.handle.net/11133/1447

Title: 大気圧マイクロ波放電ジェット・プラズマの流体力学的特性
Other Titles: タイキアツ マイクロハ ホウデン ジェット プラズマ ノ リュウタイ リキガク テキ トクセイ
Fluid Mechanical Characteristics of Microwave Discharge Jet Plasmas at Atmospheric Gas Pressure
Authors: 高村, 秀一
齋藤, 誠紀
櫛田, 玄一郎
神藤, 正士
大野, 哲靖
TAKAMURA, Shuichi
SAITO, Seiki
KUSHIDA, Genichiro
KANDO, Masashi
OHNO, Noriyasu
Issue Date: 31-Mar-2009
Publisher: 愛知工業大学
Abstract: Fluid mechanical properties of microwave discharge jet for argon and helium plasmas at atmospheric gas pressure is investigated. Kelvin-Helmholtz(K-H) instability due to shear flow of working gas with surrounding air is seen to reflect on the plasma structure. Pulsation phenomenon for helium plasma jet is found not to have a counterpart in gas fluid behavior. Flickering phenomenon is shared in both jet diffusion flame and plasma jet. Ascending flow due to buoyancy effect and convection surrounding air to be followed by vortex formation originated from K-H instability would be the physical mechanism for the flickering.
URI: http://hdl.handle.net/11133/1447
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