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A Novel Dual-Electrode Plug to Achieve Intensive Electric Field for High Performance Ignition

机译:一种新型双电极插头,实现高性能点火的密集电场

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摘要

A thorough analysis of electric field is carried out so as to verify that a novel dual-electrode plug can build intensive electric field and can improve the main drawbacks of feeble electric field and low ignition efficiency of the traditional plug. With intensive electric field, the proposed novel plug can achieve high performance ignition, resulting in fuel saving and exhaust reduction. Gauss law is applied for electric field analysis to show that intensive electric field can be built by the novel plug. Then, according to Faraday law a lower-voltage ignition feature accomplished by the plug is discussed. Compared with traditional plug, the novel dual-electrode plug has the following advantages. (1) Much higher energy density is built between the plug electrodes, lowering ignition voltage requirement. (2) Electromagnetic interference (EMI) problem caused by high ignition voltage is readily resolved. (3) Ignition time delay can be improved. (4) The feature to save fuel consuming is achieved. (5) The exhaust of CO and HC is reduced significantly. Practical measurements are fulfilled to validate the electric field analysis and to demonstrate the features of the proposed dual-electrode plug.
机译:进行了对电场的彻底分析,以验证新型双电极插头是否可以构建密集的电场,可以提高传统插头的微弱电场和低点火效率的主要缺点。采用密集电场,建议的新型插头可以实现高性能点火,导致节省燃料和排气。高斯法律适用于电场分析,以表明电磁场可以由新型插头构建。然后,根据法拉第规律,讨论了插头所完成的低压点火特征。与传统插头相比,新型双电极塞具有以下优点。 (1)在插头电极之间建造了更高的能量密度,降低点火电压要求。 (2)高点火电压引起的电磁干扰(EMI)问题易于解决。 (3)点火时间延迟可以提高。 (4)实现节省燃料消耗的功能。 (5)CO和HC的排气显着减少。实现实际测量以验证电场分析,并展示所提出的双电极插头的特征。

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