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A Dusty Plasma in a Non-Self-Sustained Gas Discharge at Atmospheric Pressure

机译:大气压下非持续性气体排放中的尘土等离子体

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摘要

A non-self-sustained (NSS) discharge at atmospheric gas pressure containing dust particles is studied. The NSS discharge was controlled by a stationary electron beam with energy up to 120 keV. A numerical model of the NSS discharge is based on the drift-diffusion approach for electrons and ions and self-consistently takes into account effects of the dust particles on the electron and ion densities. The dusty component is described by the number balance equation and the equation of motion for dust particles with allowance for the Stokes force, gravity force and electric force in the cathode sheath. Interaction between dust particles is described in the self-consistent field approximation. It is established that, at a given gas ionization rate and given applied voltage, there is a critical dust particle size above which the levitation condition in the cathode sheath cannot be satisfied. (C) 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
机译:研究了在大气压下含有尘埃颗粒的非自持(NSS)放电。 NSS放电由能量高达120 keV的固定电子束控制。 NSS放电的数值模型基于电子和离子的漂移-扩散方法,并且始终如一地考虑了灰尘颗粒对电子和离子密度的影响。尘埃成分由数量平衡方程和尘埃粒子的运动方程描述,并考虑到阴极护套中的斯托克斯力,重力和电场力。尘埃粒子之间的相互作用以自洽场近似描述。已经确定,在给定的气体电离速率和给定的施加电压下,存在临界粉尘粒径,在该临界粉尘粒径以上,不能满足阴极鞘中的悬浮条件。 (C)2016 WILEY-VCH Verlag GmbH&Co.KGaA,魏因海姆

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