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Information Journal Paper

Title

Numerical Study of Plasma Impinging Jet Generated by Corona Discharge Regime

Pages

  259-267

Abstract

 The impinging jet resulted from Corona Discharge has been used in different applications such as cooling, refining and enhancing heat transfer. In this research, the characteristics of this flow including velocity and the force applied by the impinging jet have been numerically studied. Hence, the governing equations of Plasma flow under the influence of electrostatic field has been solved by using a finite element method. The final results show that in atmospheric condition, by applying a voltage of 500 V between two electrodes with a 200 μ m gap, the maximum velocity after impingement reaches to 2. 3 m/s. Also the maximum volume force applied on the cathode surface is almost equal to 1. 23×. The conducted simulation has successfully shown the process of jet formation in four steps including ion production, ion flow stretching, ion flow impingement to the cathode surface and finally jet expansion.

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    APA: Copy

    , A. R. Fathi, & AHANGAR, M.. (2019). Numerical Study of Plasma Impinging Jet Generated by Corona Discharge Regime. JOURNAL OF MECHANICAL ENGINEERING, 49(3 (88) ), 259-267. SID. https://sid.ir/paper/270029/en

    Vancouver: Copy

    A. R. Fathi, AHANGAR M.. Numerical Study of Plasma Impinging Jet Generated by Corona Discharge Regime. JOURNAL OF MECHANICAL ENGINEERING[Internet]. 2019;49(3 (88) ):259-267. Available from: https://sid.ir/paper/270029/en

    IEEE: Copy

    A. R. Fathi , and M. AHANGAR, “Numerical Study of Plasma Impinging Jet Generated by Corona Discharge Regime,” JOURNAL OF MECHANICAL ENGINEERING, vol. 49, no. 3 (88) , pp. 259–267, 2019, [Online]. Available: https://sid.ir/paper/270029/en

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