Electric field device and method for reducing electric field coupling

文档序号:491542 发布日期:2022-01-04 浏览:37次 中文

阅读说明:本技术 一种电场装置及减少电场耦合方法 (Electric field device and method for reducing electric field coupling ) 是由 唐万福 王大祥 段志军 邹永安 奚勇 于 2020-05-27 设计创作,主要内容包括:本发明提供一种电场装置及减少电场耦合方法,包括电场装置入口、电场装置出口、电场阴极和电场阳极,所述电场阴极和所述电场阳极用于产生电离电场;所述电场阳极和所述电场阴极的极间距小于150mm。本发明还提供一种减少电场耦合的方法,包括选择所述电场阳极和所述电场阴极的极间距,使电场耦合次数≤3,能够减少电场的耦合消耗。(The invention provides an electric field device and a method for reducing electric field coupling, comprising an electric field device inlet, an electric field device outlet, an electric field cathode and an electric field anode, wherein the electric field cathode and the electric field anode are used for generating an ionization electric field; the distance between the electric field anode and the electric field cathode is less than 150 mm. The invention also provides a method for reducing the electric field coupling, which comprises the step of selecting the polar distance between the electric field anode and the electric field cathode to ensure that the electric field coupling frequency is less than or equal to 3, so that the coupling consumption of the electric field can be reduced.)

An electric field device, comprising an electric field device inlet, an electric field device outlet, an electric field cathode and an electric field anode, wherein the electric field cathode and the electric field anode are used for generating an ionization electric field; the distance between the electric field anode and the electric field cathode is less than 150 mm.

The electric field device of claim 1, wherein the electric field anode and the electric field cathode have a polar separation of 2.5-139.9 mm.

An electric field device according to claim 1 or 2, wherein the electric field anode and the electric field cathode are separated by a distance of 5-100 mm.

An electric field arrangement according to any of claims 1 to 3, wherein the inter-polar distance between the electric field anode and the electric field cathode is such that the number of coupling times of the ionizing electric field is less than or equal to 3.

An electric field arrangement according to any of claims 1-3, characterized in that the ratio of the working area of the electric field anode to the discharge area of the electric field cathode, the pole separation between the electric field anode and the electric field cathode, the electric field anode length and the electric field cathode length are such that the number of couplings of the ionizing electric field is < 3.

A method of reducing electric field coupling, comprising the steps of:

selecting the inter-polar distance between the electric field anode and the electric field cathode to ensure that the electric field coupling frequency is less than or equal to 3.

The method of claim 6, comprising selecting a pole separation of the electric field anode and the electric field cathode to be less than 150 mm.

A method of reducing electric field coupling according to claim 6 or claim 7, comprising selecting the electric field anode and the electric field cathode to have a pole separation of 2.5-139.9 mm.

A method of reducing electric field coupling according to any of claims 6 to 8, comprising selecting the electric field anode and the electric field cathode to have a pole separation of 5 to 100 mm.

A method for reducing electric field coupling as claimed in any one of claims 6 to 9 wherein the ratio of the working area of the electric field anode to the discharge area of the electric field cathode, the inter-polar distance between the electric field anode and the electric field cathode, the electric field anode length and the electric field cathode length are selected such that the number of couplings of the ionizing electric field is < 3.

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