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首页> 外文期刊>Plasma Science, IEEE Transactions on >Influence of a Circuit Parameter for Plasma Water Treatment by an Inductive Energy Storage Circuit Using Semiconductor Opening Switch
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Influence of a Circuit Parameter for Plasma Water Treatment by an Inductive Energy Storage Circuit Using Semiconductor Opening Switch

机译:电路参数对使用半导体断路开关的感应储能电路处理等离子体水的影响

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摘要

In this paper, we investigate a water treatment method that sprays waste water droplets into a pulsed discharge space. For this method, it is important to apply pulsed voltages with a short pulse width and a fast rise to the electrode to realize high energy efficiency. An inductive energy storage (IES) circuit using a semiconductor opening switch (SOS) outputs pulsed voltages similar to the above-mentioned voltage. We report the characteristics of the water treatment using the IES circuit. The capacitance and inductance in the IES circuit are varied. An increase in the inductance in the secondary circuit of the pulse transformer, results in the formation of pulsed voltages with a longer pulse width; thus, the ratio of the thermal loss to the discharge energy becomes high. However, the energy transfer efficiency improves. Additionally, we vary the maximum current of the SOS, keeping the pulse width constant, by adjusting the capacitance and the inductance. As a result, when the current in the SOS increased, pulsed voltages with a higher peak and a shaper rise are obtained. Further, the pulse width of the voltage and the energy transfer efficiency are not affected by the current in the SOS. Hence, the energy density of the discharge is higher. The increase in the secondary inductance and the forward current increased the energy efficiency of the water treatment system owing to the increase in the energy transfer efficiency and the discharge energy density.
机译:在本文中,我们研究了一种将废水小滴喷射到脉冲放电空间中的水处理方法。对于该方法,重要的是向电极施加具有短脉冲宽度和快速上升的脉冲电压以实现高能量效率。使用半导体断开开关(SOS)的感应能量存储(IES)电路输出与上述电压相似的脉冲电压。我们报告了使用IES电路进行水处理的特征。 IES电路中的电容和电感是变化的。脉冲变压器次级电路中电感的增加会导致形成脉冲宽度更长的脉冲电压。因此,热损失与放电能量的比率变高。但是,能量传递效率提高。此外,我们通过调整电容和电感来改变SOS的最大电流,并保持脉冲宽度恒定。结果,当SOS中的电流增加时,获得具有较高峰值和整形器上升的脉冲电压。此外,电压的脉冲宽度和能量传输效率不受SOS中电流的影响。因此,放电的能量密度更高。由于能量传递效率和放电能量密度的增加,次级电感和正向电流的增加提高了水处理系统的能量效率。

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