首页> 外文会议>IEEE Ultrasonics Symposium >The acoustic resonator combined with electrical discharges
【24h】

The acoustic resonator combined with electrical discharges

机译:声学谐振器结合电气放电

获取原文

摘要

Environmental applications, such as pollution control, utilize different chemical reactions. Their efficiency can be improved by the application of a power acoustic field. Many reactions can be enhanced by ionization of the reactant medium, which is most frequently performed by electrical discharges. One way to meet these requirements utilizes the combination of an acoustic resonator with non-thermal electrical discharges. The important factors in industrial applications are discharge power and volume. In order to increase the discharge volume and to prevent a discharge transition into sparks, we designed a discharge stabilization of multi-needle to axial-wire electrode system, which is situated in the pressure node of the acoustic resonator. Factors which contribute to the stabilization are: first, the gas particles that are swung on the pressure node plane; and second, the acoustic pressure gradient, which strongly influences breakdown conditions. With the reduction of acoustic pressure, the reduced electric field is increased, and suitable conditions for discharge streamer tracing are established. The streamers are easily swung into place over the estimated maximal amplitude of sound displacement and discharges are strongly spread. The discharges are stabilized at all needles even if they are connected to the same potential. The needle tips are effectively cooled by the acoustic wave. Several multi-needle electrodes can be placed around the resonator diameter centered at the node plane so that the considerable resonator node volume is filled with the discharges. The stabilization may be applied to different regimes of discharges; e.g. corona, glow and streamer.
机译:环境应用,如污染控制,利用不同的化学反应。通过应用功率声学场可以提高它们的效率。通过电离反应物介质可以提高许多反应,其最常通过电排出而进行。满足这些要求的一种方法利用声谐振器具有非热电放电的组合。工业应用中的重要因素是放电功率和体积。为了增加放电体积并防止放电过渡到火花中,我们设计了多针的放电稳定到轴线电极系统,其位于声谐振器的压力节点中。有助于稳定的因素是:首先,在压力节点平面上摆动的气体颗粒;其次,声压梯度强烈影响击穿条件。随着声压的降低,降低的电场增加,建立了放电拖缆跟踪的合适条件。拖车在估计的声音位移幅度上容易摆动到位,并且放电强烈扩散。即使它们连接到相同的电位,放电也稳定在所有针上。针尖通过声波有效地冷却。几个多针电极可以围绕在节点平面处于中心的谐振器直径围绕,使得相当大的谐振器节点容积填充有放电。稳定化可以应用于不同的排放制度;例如电晕,焕发和飘带。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号