Thermophysical properties of pure gases and mixtures at temperatures of 300–30 000K and atmospheric pressure:thermodynamic properties and solution of equilibrium compositions

被引:0
作者
池中源 [1 ]
张卫军 [1 ]
杨强大 [1 ]
机构
[1] School of Metallurgy, Northeastern University
基金
中央高校基本科研业务费专项资金资助;
关键词
D O I
暂无
中图分类号
O642.1 [化学热力学(反应热力学)];
学科分类号
070304 ; 081704 ;
摘要
The equilibrium compositions and thermodynamic properties(density, enthalpy, etc at constant pressure) of plasma of pure gases and mixtures under local thermodynamic nonequilibrium have been calculated in this paper. The homotopy Levenberg–Marquardt algorithm was proposed to accurately solve nonlinear equations with singular Jacobian matrices, and is constructed by the Saha equation and Guldberg–Waage equation combined with mass conservation, the electric neutrality principle and Dalton’s partial pressure law, to solve the problem of dependence on the initial value in the process of iteration calculation. In this research, the equations at a higher temperature were solved and used as the auxiliary equations, and the homotopy control parameters’ sequence of the homotopy equations was selected by equal ratios. For auxiliary equations, the iterative initial value was obtained by assuming that there were only the highestvalence atomic cations and electrons at this temperature, and the plasma equilibrium composition distribution with the required accuracy was ultimately solved under the current conditions employing the Levenberg–Marquardt algorithm. The control parameter sequence was arranged according to the geometric sequence and the homotopy step was gradually shortened to ensure continuity of the homotopy process. Finally, the equilibrium composition and thermodynamic properties of pure N, Mg(30%)–CO(70%) and Mg(40%)–CO(50%)–N2(10%) mixture plasma at atmospheric pressure were calculated and the calculation process of some specified temperatures was shown and analyzed. The calculation accuracy of equilibrium composition is higher than other findings in the literature. The results for the thermodynamic properties are in good agreement with data reported by the literature.
引用
收藏
页码:178 / 192
页数:15
相关论文
共 29 条
  • [1] Calculation of two-temperature plasma composition: I. Mass action law methods and extremum searching methods[J] . Linlin Zhong,Anthony B Murphy,Xiaohua Wang,Mingzhe Rong.Journal of Physics D: Applied Physics . 2020 (6)
  • [2] Simplified method for calculation of equilibrium plasma composition[J] . Maria A. Rydalevskaya.Physica A: Statistical Mechanics and its Applications . 2017
  • [3] A high-order modified Levenberg–Marquardt method for systems of nonlinear equations with fourth-order convergence[J] . Liang Chen.Applied Mathematics and Computation . 2016
  • [4] New observations and analyses of highly excited bands of the fourth-positive ( A 1 Π → X 1 Σ + ) band system in 12 C 16 O[J] . Ma?gorzata Ostrowska-Kope?,Izabela Piotrowska,Ryszard K?pa,Pawe? Kowalczyk,Miros?aw Zachwieja,Rafa? Hakalla.Journal of Molecular Spectroscopy . 2015
  • [5] Numerical analysis of the coupled arc–weld pool–keyhole behaviors in stationary plasma arc welding[J] . Xiaoxia Jian,Chuan Song Wu.International Journal of Heat and Mass Transfer . 2015
  • [6] Thermophysical properties of SF6–Cu mixtures at temperatures of 300–30 000 K and pressures of 0.01–1.0 MPa: part 1. Equilibrium compositions and thermodynamic properties considering condensed phases[J] . Mingzhe Rong,Linlin Zhong,Yann Cressault,Alain Gleizes,Xiaohua Wang,Feng Chen,Hao Zheng.Journal of Physics D: Applied Physics . 2014 (49)
  • [7] Accelerating the modified Levenberg-Marquardt method for nonlinear equations[J] . Jinyan Fan.Mathematics of Computation . 2013 (287)
  • [8] Plasma Surface Modification of Biomedical Polymers: Influence on Cell-Material Interaction[J] . Tinneke Jacobs,Rino Morent,Nathalie Geyter,Peter Dubruel,Christophe Leys.Plasma Chemistry and Plasma Processing . 2012 (5)
  • [9] Thermophysical Properties of High-Temperature Reacting Mixtures of Carbon and Water in the Range 400–30,000 K and 0.1–10 atm. Part 1: Equilibrium Composition and Thermodynamic Properties[J] . Wei Zong Wang,A. B. Murphy,J. D. Yan,Ming Zhe Rong,J. W. Spencer,M. T. C. Fang.Plasma Chemistry and Plasma Processing . 2012 (1)
  • [10] MRCI study of potential energy curves, spectroscopic and molecular properties of the CO + cation[J] . Deheng Shi,Wentao Li,Jinfeng Sun,Zunlue Zhu,Yufang Liu.Computational and Theoretical Chemistry . 2011 (1)