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作 者:廖梦然[1,2] 吴涵峰 王城 夏维东[1] LIAO Mengran1,2, WU Hanfengl, WANG Cheng1, XIA Weidong1(1. Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230026, China; 2. Key Laboratory on Thermal Power Technology, Wuhan Second Ship Design and Research Institute, Wuhan 430025, Chin)
机构地区:[1]中国科学技术大学热科学和能源工程系,合肥230026 [2]武汉第二船舶设计研究所热能动力技术重点实验室,武汉430025
出 处:《高电压技术》2018年第3期926-931,共6页High Voltage Engineering
基 金:国家自然科学基金(11475174;11035005);安徽省科技攻关计划(1604a0902145)~~
摘 要:Steenbeck最小弧压原理在电弧等离子体研究中被广泛使用,然而历史上关于该假设仍然有不少争议。为了澄清最小弧压原理中的矛盾及其合适的使用条件,重新梳理了其发展历史并做了进一步分析讨论。分析结果表明,根据Steenbeck电弧通道模型和最小弧压原理,将得出并不真实的弧柱半径。其次,比较了多种电弧理论方法与能量方程(Elenbaas-Heller方程)之间的联系,证明Steenbeck最小弧压原理的引入是没有必要的。最后,总结了关于Steenbeck最小弧压原理和最小熵产原理、电磁学方程之间的联系和差别,表明Steenbeck最小弧压原理与经典理论之间的矛盾和冲突。The Steenbeck minimum voltage(SMP) is widely used in the study of arc discharge plasmas, however, its validity is still in dispute in history. Consequently, we reexamined and discussed the history of SMP, and analyzed the true mathematical and physical meanings of the SMP in detail. Results show that the original method combined with SMP and Steenbeck's channel model(SCM) tends to give a wrong estimation of the arc channel radius. On the other hand, analyses show that the SMP is redundant in the characterization of arc discharge plasma, after comparing it with other model or method on the solution of energy equation(also called the Elenbaas-Heller equation). In the end, the relation and difference between SMP and the classical thermodynamic-electromagnetic theory, including the minimum entropy production principle(MEP) and so on, is discussed.
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