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Code-generator-based software package for defining and solving one-dimensional, dynamic, catalytic reactor models

机译:基于代码生成器的软件包,用于定义和求解一维动态催化反应器模型

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摘要

A code-generator-based software is presented which automatically generates FORTRAN subroutines describing a tubular catalytic reactor from simply structured xml-input files specifying the reacting species and reaction network. These routines are then linked to the adaptive partial differential equation (PDE) solver BACOL, which has been extended to allow direct execution from within MATLAB. A unique feature of the presented subroutine-generator is the option for an automated simplification of heterogeneous reaction networks into global Langmuir-Hinshelwood-type reaction rates using a quasi-equilibrium approximation. Using a water-gas shift reaction mechanism published by Mhadewshwar et al., the high-computational performance of the presented software is demonstrated and the impact of the automated approximations upon the solution as well as the simulation's computational performance are investigated.
机译:提出了一种基于代码生成器的软件,该软件可从简单的结构化xml输入文件自动生成描述管状催化反应器的FORTRAN子程序,该文件指定了反应物种和反应网络。这些例程然后链接到自适应偏微分方程(PDE)求解器BACOL,该函数已得到扩展,可以从MATLAB内部直接执行。所提供的子例程生成器的一个独特功能是使用准平衡近似将异构反应网络自动简化为全局Langmuir-Hinshelwood型反应速率的选项。使用Mhadewshwar等人发表的水煤气变换反应机理,证明了所提供软件的高计算性能,并研究了自动逼近对解的影响以及仿真的计算性能。

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