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首页> 外文期刊>IEEE Transactions on Industry Applications >Prevention of Back Corona Discharge in an Electrostatic Precipitator Using Asymmetrical Rectangular AC Voltage
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Prevention of Back Corona Discharge in an Electrostatic Precipitator Using Asymmetrical Rectangular AC Voltage

机译:利用不对称矩形交流电压防止静电除尘器中的反电晕放电

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The aim of this article is to prevent back corona discharge using asymmetrical rectangular ac voltage. The experimental electrostatic precipitator (ESP) consisted of a high-voltage application wire electrode and a grounded plate electrode with a gap in between. Calcium carbonate dust was placed on the surface of the grounded plate electrode. Dc, symmetric, or asymmetric rectangular ac voltage was applied to the wire electrode. The voltage waveform and the current waveform were measured, and a photograph of discharge luminescence on the surface of the dust layer was taken by a digital camera. When dc high voltage was applied, the discharge current increased, and the discharge luminescence was observed on the surface of the dust layer due to back corona discharge. On the other hand, the discharge current did not increase and discharge luminescence was not observed, when the symmetrical ac high voltage at the period of 4 ms was applied. However, the application time of the positive polarity was equal to the negative polarity, and the period was short. Accordingly, it is expected that the collection efficiency is not high in the symmetrically energized ESP. Thus, the effect of an asymmetrical ac energization was investigated. The result showed that the back corona discharge was avoided in the ESP energized by an asymmetrical rectangular ac high voltage with a period of 9 ms including a positive period of 7 ms and negative period of 2 ms.
机译:本文的目的是防止使用不对称的矩形交流电压进行反向电晕放电。实验用静电除尘器(ESP)由高压施加线电极和接地的平板电极组成,两者之间留有间隙。将碳酸钙粉尘放置在接地板电极的表面上。将Dc,对称或不对称的矩形交流电压施加到线电极上。测量电压波形和电流波形,并通过数字照相机拍摄灰尘层表面上的放电发光照片。当施加直流高压时,放电电流增加,并且由于反电晕放电而在灰尘层的表面上观察到放电发光。另一方面,当施加4ms周期的对称交流高压时,放电电流没有增加并且没有观察到发光。然而,正极的施加时间等于负极的施加时间,并且周期短。因此,期望在对称通电的ESP中收集效率不高。因此,研究了不对称通电的效果。结果表明,在不对称的矩形交流高压电中,具有9 ms的正周期(包括7 ms的正周期和2 ms的负周期)激励的ESP避免了反向电晕放电。

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