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- W2091183070 abstract "Time-dependent three-dimensional numerical simulation based on a large-eddy simulation approach is conducted to ascertain the complicated thermofluid dynamics of an argon radio-frequency (RF) inductively coupled plasma with a direct-current (dc) plasma jet assistance, considering non-uniform densities and properties in time and space as well as turbulence generation and suppression. Using a combination of numerical schemes suitable to capture vortices, the present simulation successfully shows unsteady behaviour of the plasma as well as wave-like interfaces between a high-temperature flow and a low-temperature flow as a result of the balance of fluid-dynamical instability and a viscous diffusion effect. Small cold vortices generated near a dc jet injector are entrained into and merged with vortices generated around the dc jet. Subsequently, they interact with large vortices in an RF induction coil region, which causes a much more complex vortex structure." @default.
- W2091183070 created "2016-06-24" @default.
- W2091183070 creator A5035963923 @default.
- W2091183070 date "2012-11-28" @default.
- W2091183070 modified "2023-10-12" @default.
- W2091183070 title "Three-dimensional flow dynamics of an argon RF plasma with dc jet assistance: a numerical study" @default.
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- W2091183070 doi "https://doi.org/10.1088/0022-3727/46/1/015401" @default.
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