1D AND 2D MODELING AND SIMULATION OF RADIAL COMBUSTION PROPAGATION ON Fe2O3/Al THERMITE SYSTEMS

IF 1.3 Q3 THERMODYNAMICS Computational Thermal Sciences Pub Date : 2012-01-01 DOI:10.1615/COMPUTTHERMALSCIEN.2012004010
Paulo Brito, L. Durães, A. Portugal
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引用次数: 3

Abstract

and composition dependency for all system properties during propagation. Therefore, an adaptive numerical algorithm that conjugates a method of lines (MOL) strategy based on finite differences space discretizations, with a collocation scheme based on increasing level dyadic grids is applied for the solution of the problem. The particular integration method proves to cope satisfactorily with the steep traveling thermal wave in 1D and 2D spatial domains, either for trivial uniform mixing conditions, as in complex examples developed to feature more sophisticated circumstances, such as nonhomogeneous reactant mixing, which realistically replicate the observed experimental conditions.
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Fe2O3/Al铝热剂体系径向燃烧传播的一维和二维建模与模拟
以及传播期间所有系统属性的组合依赖关系。因此,采用基于有限差分空间离散化的线法(MOL)策略与基于递增级并进网格的配置方案相结合的自适应数值算法求解该问题。这种特殊的积分方法被证明可以令人满意地处理一维和二维空间域中陡峭的行热波,无论是在琐碎的均匀混合条件下,还是在复杂的例子中,比如在更复杂的情况下,如非均匀反应物混合,它真实地复制了观察到的实验条件。
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来源期刊
CiteScore
2.70
自引率
6.70%
发文量
36
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