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- W2741162783 abstract "Environmental applications, such as pollution control, utilize different chemical reactions. Their efficiency can be improved by the application of a power sound field. Many reactions can be enhanced by ionization of the reactant medium, which is most frequently performed by electrical discharges. One of the most reliable ways to meet these requirements utilizes the combination of an acoustic resonator with non-thermal electrical discharges. The important factors in the 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 new stabilization of multi-needle-to-plate electrode system, which is situated in the sound 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 sound pressure gradient, which strongly influences breakdown conditions. With the abatement of sound pressure, the reduced electric field is increased, and suitable conditions for streamer tracing are established. The streamers are easily swung into place over the estimated maximal amplitude of sound displacement and discharge is 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 sound wave. The stabilization may be applied to different regimes of discharges; e.g. corona, glow and streamer." @default.
- W2741162783 created "2017-08-08" @default.
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- W2741162783 date "2010-01-01" @default.
- W2741162783 modified "2023-09-24" @default.
- W2741162783 title "Stabilization of Multi-needle-to-Plate Electrical Discharges in a High-intensity Sound Field" @default.
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