使用MATLAB,测定大气中热力学平衡的氢质种类

Reeky Fardinata, Saktioto Saktioto
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引用次数: 0

摘要

利用MATLAB软件模拟了常压下氢等离子体的热平衡。将Runge - Kutta法数值方法与arrhenius方程方法和连续性方程相结合,作为化学基结物的微分模型方程的求解方法,得到了各物种的平衡密度值。平衡氢等离子体在大气压力和密度率复习每一个反应涉及。作为参考平衡等离子体的电离和失联参数。在10-6 ~ 10-3 s的时间间隔内发现了温度为1 eV的热氢等离子体。氢等离子体热平衡密度总体在1014 m-3 ~ 1020 m-3之间。每个物种的反应速率根据碰撞类型和物种的变化速率而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PENENTUAN DENSITAS SPESIES PLASMA HIDROGEN PADA KESETIMBANGAN TERMODINAMIK TEKANAN ATMOSFIR MENGGUNAKAN MATLAB
Thermal equilibrium hydrogen plasma at atmospheric pressure were simulated using the software matrix laboratory (MATLAB). Runge Kutta method numerical method as a settlement of differensial model equations of chemical kibetik with the arrhenius equation approach and continuity equations so that the equilibrium density values for each species were obtained.  Equilibrium hydrogen plasma at atmospheric pressure and density rate review every reaction involved.  Parameter of ionizing   and disasosiasi  as a reference equilibrium plasma.  Equilibrium plasma is found in time interval 10-6 – 10-3 s thermal hydrogen plasmas with temperatures of 1 eV.  The density  of hydrogen plasma thermal equilibrium overall are in the interval of 1014 m-3 - 1020 m-3 . The reaction rate of each species varies based on the type of collision and rate of change of species.
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