He-H2超导二元混合物的电子群参数和介电性能

Mohammad M. Othman, S. A. Taha, S. O. Ibrahim
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引用次数: 1

摘要

本文研究了低温高温超导电源应用中氢-氢二元气体混合物的电子能量分布函数EEDF、电子群参数、有效电离系数和临界场强(介电强度)。在温度为77 K,压力为2MPa的条件下,考虑弹性和非弹性截面,采用玻尔兹曼方程的两项近似,在E/N(电场与气体密度之比)范围内从1到100 Td (1 Td=10-17 Vcm2)进行了评估。利用计算得到的EEDF,计算出电子群参数(电子漂移速度、平均电子能、扩散系数、电子迁移率、电离和附着系数)。在低约化电场E/N时,EEDF接近麦克斯韦分布,在高约化电场E/N时,由于H2的振动激发,计算得到的分布函数是非麦克斯韦分布。此外,在He-H2混合物中,增加少量的H2有助于edf尾部向低能区移动,降低了电离系数α/N。还原有效电离系数(α-η)/N减小,而还原附着系数η/N减小,临界电场强度(E/N)减小。临界电场Ecrt。增加,因为氢的电离截面很大。5% H2混合物的介电强度与实验值吻合较好,介电强度与压力和温度有关。纯气态氦(He)和氢(H2)的电子群参数与已有的理论和实验值吻合得很好。通过对玻尔兹曼方程的两项近似分析,证实了计算值的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron Swarm Parameters and Dielectric Properties of the Superconducting Binary Mixtures of He-H2
In this study, the electron energy distribution function EEDF, the electron swarm parameters, the effective ionization coefficients, and the critical field strength (dielectric strength) in binary He-H2 gas mixture which used as cryogenic for high-temperature superconducting power application, are evaluated by using two-term approximation of the Boltzmann equation over the range of E/N ( the electric field to gas density) from 1 to 100 Td ( 1 Td=10-17 Vcm2) at temperature 77 K and pressure 2MPa, taking into account elastic and inelastic cross-section. Using the calculated EEDF, the electron swarm parameters (electron drift velocity, mean electron energy, diffusion coefficient, electron mobility, ionization and attachment coefficient) are calculated. At low reduced electric field E/N, the EEDF close Maxwellian distribution, at high E/N, due to vibrational excitation of H2 the calculated distribution function is non-Maxwellian. Besides, in the He-H2 mixture, it is found that increasing small amount of H2 enhances to shift the tail of EEDF to the lower energy region, the reduced ionization coefficient α/N. reduced effective ionization coefficient (α-η)/N) decreases, while, reduced attachment coefficient η/N, reduced critical electric field strength (E/N)crt. and critical electric field Ecrt. Increases, because of hydrogen’s large ionization cross-sections. The dielectric strength of 5% H2 in mixture is in good agreement with experimental values, it is found that dielectric strength depend on pressure and temperature. The electron swarm parameters in pure gaseous helium (He) and hydrogen (H2), in satisfying agreement with previous available theoretical and experimental values. The validity of the calculated values has been confirmed by two-term approximation of the Boltzmann equation analysis.
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来源期刊
Alinteri Journal of Agriculture Sciences
Alinteri Journal of Agriculture Sciences AGRICULTURE, MULTIDISCIPLINARY-
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