首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Prediction of the critical reduced electric field strength for carbon dioxide and its mixtures with 50% O_2 and 50% H_2 from Boltzmann analysis for gas temperatures up to 3500K at atmospheric pressure
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Prediction of the critical reduced electric field strength for carbon dioxide and its mixtures with 50% O_2 and 50% H_2 from Boltzmann analysis for gas temperatures up to 3500K at atmospheric pressure

机译:根据大气压下气体温度高达3500K的Boltzmann分析预测二氧化碳及其与50%O_2和50%H_2的混合物的临界降低的电场强度

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摘要

This paper provides theoretical calculations that predict the dielectric breakdown properties of carbon dioxide (CO_2) and its mixtures with 50% O_2 and 50% H_2 for a gas temperature range of 300-3500K at 0.1MPa. CO_2 is one of the most likely candidates for an environment-friendly arc-quenching medium to replace SF_6 in high-voltage circuit breakers. Initially, the electron energy distribution function (EEDF) is derived by solving the Boltzmann equation under the zero-dimensional two-term spherical harmonic approximation. Then the reduced ionization and attachment coefficients are obtained, based on the calculated EEDF. Finally, the critical reduced electric field strength (E/N)_(cr), which is defined as the value for which total ionization reactions are equal to total attachment reactions, is obtained and analysed. The results demonstrate the superior breakdown properties of a 50% CO_2-50% O_2 mixture to those of both pure CO_2 and 50% CO_2-50% H_2. Nearly no deviation in (E/N)_(cr) is found in a 50% CO_2-50% O_2 mixture for gas temperatures up to 2500 K, and although there is clear reduction as the gas temperature is increased further to 3500 K, the value remains higher than that of pure CO_2.
机译:本文提供了理论计算,可以预测在0.1MPa的300-3500K气体温度下,二氧化碳(CO_2)及其混合物与50%O_2和50%H_2的介电击穿性能。 CO_2是替代高压断路器中SF_6的环保灭弧介质的最有可能的候选者之一。最初,电子能量分布函数(EEDF)是通过在零维二维项球谐近似下求解玻尔兹曼方程得出的。然后,基于计算出的EEDF,获得降低的电离和附着系数。最后,获得并分析临界降低的电场强度(E / N)_(cr),该值被定义为总电离反应等于总附着反应的值。结果表明,与纯CO_2和50%CO_2-50%H_2相比,50%CO_2-50%O_2混合物具有优异的击穿性能。在最高2500 K的气体温度下,在50%CO_2-50%O_2的混合物中几乎没有发现(E / N)_(cr)的偏差,尽管随着气体温度进一步升高到3500 K,尽管有明显降低,该值仍然高于纯CO_2。

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