首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Fundamental properties of high-temperature SF_6 mixed with CO_2 as a replacement for SF_6 in high-voltage circuit breakers
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Fundamental properties of high-temperature SF_6 mixed with CO_2 as a replacement for SF_6 in high-voltage circuit breakers

机译:高温SF_6与CO_2混合的基本特性可替代高压断路器中的SF_6

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摘要

Sulfur hexafluoride (SF_6) gas, used widely in high-voltage circuit breakers, can produce a remarkable greenhouse effect if released into the atmosphere. Fundamental properties of SF_6 mixed with CO_2 at high temperatures are presented in this paper, considering their reduction of adverse impact on the environment as a replacement for pure SF_6 in high-voltage circuit breakers: to the knowledge of the authors, related data have not been reported in the literature. The species composition and thermodynamic properties (mass density, enthalpy and specific heat at constant pressure) are determined by the method of Gibbs free energy minimization, using standard thermodynamic tables. The transport properties, including viscosity, thermal conductivity and electrical conductivity, are evaluated by using the Chapman–Enskog method expanded up to the third-order approximation (second order for viscosity). Particular attention is paid to the establishment of a collision integral database related to a reacting species system containing basic elements of carbon, oxygen and sulfur as well as fluoride by the use of recent cross sections or interaction potentials available in the literature. The calculations, which assume a local thermodynamic equilibrium, are performed in the temperature range 300 to 30 000K for different pressures between 0.01 and 1.6MPa. The results obtained are compared to those of previously published studies, and the reasons for discrepancies are analysed. An evaluation of the current interruption performance by adding CO_2 to SF_6 is discussed from a microscopic point of view. The results provide reliable reference data for the simulation of switching arcs in high-voltage circuit breakers in SF_6–CO_2 mixtures.
机译:六氟化硫(SF_6)气体广泛用于高压断路器,如果释放到大气中,会产生显着的温室效应。考虑到在高压断路器中SF_6与纯SF_6的替代品,SF_6与CO_2混合时在高温下的基本性能,考虑了它们对环境的不利影响的降低:据作者所知,尚未提供相关数据文献报道。物种组成和热力学性质(恒定压力下的质量密度,焓和比热)通过吉布斯自由能最小化方法使用标准热力学表确定。通过使用Chapman–Enskog方法评估扩展到三阶近似值(对于粘度为二阶),可以评估包括粘度,导热率和电导率在内的传输特性。通过利用文献中可获得的最新截面或相互作用势,特别注意建立与包含碳,氧,硫和氟化物基本元素的反应物种系统有关的碰撞积分数据库。假定局部热力学平衡,则在300至30 000K的温度范围内,针对0.01至1.6 MPa之间的不同压力执行计算。将获得的结果与以前发表的研究进行比较,并分析差异的原因。从微观的角度讨论了通过向SF_6中添加CO_2对电流中断性能的评估。结果为在SF_6–CO_2混合物中的高压断路器中的开关电弧进行仿真提供了可靠的参考数据。

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