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首页> 外文期刊>Plasma Science, IEEE Transactions on >Volt-Ampere and Thermal Features of a Direct-Current Dual-Jet Plasma Generator With a Cold Gas Injection
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Volt-Ampere and Thermal Features of a Direct-Current Dual-Jet Plasma Generator With a Cold Gas Injection

机译:带有冷气体注入的直流双射流等离子体发生器的伏安和热特性

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摘要

Experimental studies on the volt-ampere characteristics and thermal efficiencies of a dual-jet direct-current arc thermal plasma generator with a cold gas injection are conducted. Discharge image processing results using the contour extraction method with the variable binary thresholding technique show that, compared with the conventional dual-jet plasma generator, the length of the high-gas-temperature region increases, the arcjet expands downward with the injection of cold gas, and the arc voltage and the thermal efficiency both increase by increasing the flow rate of the injected cold gas as a whole, accompanied by the more severe electrode ablation. The derived generalized dimensional complex equations concerning the electrical and thermal characteristics of the plasma generator based on the measured data and using the multiple linear regression method can, to some extent, be employed to predict the electrical and thermal features of the plasma generator. These equations are helpful for the design and operation of the dual-jet thermal plasma generator with a cold gas injection in actual applications.
机译:对带有冷气体注入的双射流直流电弧热等离子体发生器的伏安特性和热效率进行了实验研究。使用轮廓提取方法和可变二进制阈值技术的放电图像处理结果表明,与传统的双射流等离子体发生器相比,高气体温度区域的长度增加,电弧射流随着冷气体的注入而向下扩展电弧电压和热效率都通过增加整体注入冷气的流量来增加,同时伴随着更严重的电极烧蚀。基于测量数据并使用多元线性回归方法,可以在某种程度上推导与等离子体发生器的电和热特性有关的广义维复方程,以预测等离子体发生器的电和热特性。这些方程式有助于实际应用中带有冷气体注入的双射流热等离子体发生器的设计和运行。

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