带限制电荷的带电水气溶胶电池的创建

V.S. Syssoev, I.P. Vereshchagin, Y. Shcherbakov
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引用次数: 0

摘要

考虑了制造总电荷空间仅受空气强度约束的带电大气电池的现有方法和装置。研究了获得水气溶胶所需的条件,对其向外定向流动进行充电,并将后者输送到接地表面。介绍了带电气溶胶发生器的方案和性能。对这种发电机的要求是根据最大空间电荷的增益和传输到所研究的空间区域。带电气溶胶传输的主要要求是:a)提供足够的带电粒子传输速度以克服空间电荷感应电场;b)限制粒子泄漏出气体动力学流的边界;c)防止发生器出口的放电和击穿现象。得到了带电空间区域的基本限制参数(即空间电荷密度、总电荷及其体积、带电粒子寿命和迁移率、支撑电流等)。研究表明,在带电气溶胶产生和传输的最佳条件下,可以获得空间电荷,使其进一步增加由于空气破坏而终止(与雷云细胞非常相似)。本文给出了在实验室实验中得到的这种极限空间电荷的参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creation of the charged water aerosol cell with the limiting electric charge
The existing methods and devices for creating the charged atmospheric cells with a total electric space charge being constrained solely by the air strength are considered. The conditions needed to obtain a water aerosol, to charge its outward directed flow and to transport the latter over a grounded surface are studied. The schemes and performances of the charged aerosol generators are illustrated. The requirements for such generators were stated based on the gain and transport of the maximal electric space charge into the investigated space area. The main requirements for a charged aerosol transport are a) to provide a charged particle transfer velocity sufficient for overcoming the space charge induced electric field, b) to restrict the particles leaking out the boundaries of a gasdynamic flow and c) to prevent the discharge and breakdown phenomena at the generator outlet. The basic limiting parameters of the charged spatial areas (i.e. the space charge density, the total charge and its volume, the charged particle lifetime and mobility, the supporting electric current etc.) have been obtained. It has been shown, that under optimal conditions for the charged aerosol generation both transport, a space charge can be gained such that its further increase becomes terminated because of the air disruption (as closely analogous to the thundercloud cell). The parameters of such limiting space charges obtained experimentally in a laboratory have been presented.
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