Study on heat transfer and flow characteristics of Ar-MIP
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O539 等离子体物理的域应用

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    Abstract:

    A 3-D model of microwave argon plasma (Ar-MIP) under atmospheric pressure is established with the finite element method to describe the temporal and spatial distribution of plasma temperature, pressure, and velocity. The interaction of these parameters is studied to explore the mechanism of microwave plasma excitation. The results show that the plasma temperature increases upon increasing the time, and the high temperature distribution exhibits spatial inhomogeneity, which causes the local changes in gas pressure and affects the flow velocity leading the thermal flow around the heat area. This is the reason that the fluid in high temperature region slows down.

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Cite this article as: GAO Xin-Xin, HUA Wei, ZHANG Hong, CHANG Ying. Study on heat transfer and flow characteristics of Ar-MIP [J]. J Sichuan Univ: Nat Sci Ed, 2019, 56: 703.

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History
  • Received:December 06,2018
  • Revised:March 07,2019
  • Adopted:March 21,2019
  • Online: July 08,2019
  • Published: