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Experimental Investigation of Two-Phase Mixture Discharges Under DC Voltage From Effects of Macroparticle Sizes

机译:宏观粒径影响下直流电压下两相混合放电的实验研究

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摘要

There has been a significant interest in many technical applications and natural phenomena concerning two-phase mixture discharges (TPMDs). Few studies have focused on the influences of different macroparticles on TPMDs. The dielectric constant is usually considered to be the only factor affecting the discharges, but in this paper, 21 kinds of different dielectric materials were used to investigate the effects on TPMDs. By the experimental results, this paper reveals the effects of macroparticle sizes, and the dielectric constant has little influence. When the diameter of TPMs is less than about 0.01 mm, the percentage of the selection of TPMs is always smaller than 50%, the discharge path selects the air but TPM, and the breakdown voltage is higher than that in air. However, when the diameter is greater than about 0.1 mm, the conclusion is opposite. When the diameter is in the range of 0.01–0.1 mm, the TPMDs have a polarity effect. The dipole-enhanced approximation model is applied to explain the experimental phenomena. It is very important in TPMDs that the macroparticle dielectric constant, the saturation charge, and the adsorption/desorption process on the material, except the effects of TPMDs, are highly correlated with the macroparticle sizes.
机译:在涉及两相混合物放电(TPMD)的许多技术应用和自然现象中,人们引起了极大的兴趣。很少有研究关注不同大颗粒对TPMD的影响。通常认为介电常数是影响放电的唯一因素,但是在本文中,使用了21种不同的介电材料来研究对TPMD的影响。通过实验结果,本文揭示了宏观粒径的影响,介电常数的影响很小。当TPM的直径小于0.01 mm时,TPM的选择百分比始终小于50%,放电路径选择空气,而选择TPM,击穿电压高于空气。但是,当直径大于约0.1毫米时,结论相反。当直径在0.01-0.1 mm范围内时,TPMD具有极性效应。应用偶极增强近似模型来解释实验现象。在TPMD中,非常重要的是,除TPMD的影响外,大颗粒的介电常数,饱和电荷和材料上的吸附/解吸过程与大尺寸高度相关。

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