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LSENS, The NASA Lewis Kinetics and Sensitivity Analysis Code

机译:LSENS,NASA Lewis动力学和灵敏度分析代码

摘要

A general chemical kinetics and sensitivity analysis code for complex, homogeneous, gas-phase reactions is described. The main features of the code, LSENS (the NASA Lewis kinetics and sensitivity analysis code), are its flexibility, efficiency and convenience in treating many different chemical reaction models. The models include: static system; steady, one-dimensional, inviscid flow; incident-shock initiated reaction in a shock tube; and a perfectly stirred reactor. In addition, equilibrium computations can be performed for several assigned states. An implicit numerical integration method (LSODE, the Livermore Solver for Ordinary Differential Equations), which works efficiently for the extremes of very fast and very slow reactions, is used to solve the "stiff" ordinary differential equation systems that arise in chemical kinetics. For static reactions, the code uses the decoupled direct method to calculate sensitivity coefficients of the dependent variables and their temporal derivatives with respect to the initial values of dependent variables and/or the rate coefficient parameters. Solution methods for the equilibrium and post-shock conditions and for perfectly stirred reactor problems are either adapted from or based on the procedures built into the NASA code CEA (Chemical Equilibrium and Applications).
机译:描述了用于复杂,均相气相反应的一般化学动力学和灵敏度分析代码。该代码的主要特征LSENS(NASA Lewis动力学和灵敏度分析代码)在处理许多不同的化学反应模型时具有灵活性,效率和便利性。这些模型包括:静态系统;稳定的一维无粘性流;冲击波在激波管中引发反应;和完美搅拌的反应器此外,可以为几个分配的状态执行平衡计算。隐式数值积分方法(LSODE,用于常微分方程的Livermore解算器)可用于非常快和非常慢的反应的极端情况下有效地工作,用于解决化学动力学中出现的“刚性”常微分方程组。对于静态反应,该代码使用解耦直接方法来计算因变量及其时间导数相对于因变量和/或速率系数参数的初始值的灵敏度系数。根据美国国家航空航天局(NASA)编码CEA(化学平衡和应用)中内置的程序对平衡和震后条件以及反应器完全搅拌的问题的求解方法进行调整。

著录项

  • 作者

    Radhakrishnan K.;

  • 作者单位
  • 年度 2000
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  • 原文格式 PDF
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