EFFICIENT COMPUTATION OF COORDINATE-FREE MODELS OF FLAME FRONTS

IF 0.9
B. Akers, D. Ambrose
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引用次数: 6

Abstract

Abstract We present an efficient, accurate computational method for a coordinate-free model of flame front propagation of Frankel and Sivashinsky. This model allows for overturned flames fronts, in contrast to weakly nonlinear models such as the Kuramoto–Sivashinsky equation. The numerical procedure adapts the method of Hou, Lowengrub and Shelley, derived for vortex sheets, to this model. The result is a nonstiff, highly accurate solver which can handle fully nonlinear, overturned interfaces, with similar computational expense to methods for weakly nonlinear models. We apply this solver both to simulate overturned flame fronts and to compare the accuracy of Kuramoto–Sivashinsky and coordinate-free models in the appropriate limit.
火焰锋面无坐标模型的高效计算
摘要本文提出了一种高效、准确的火焰前传播无坐标模型的计算方法。与Kuramoto-Sivashinsky方程等弱非线性模型相比,该模型允许火焰前缘翻转。数值计算程序采用了Hou、Lowengrub和Shelley为涡片导出的方法。结果是一个非刚性的、高精度的求解器,它可以处理完全非线性的、翻转的界面,计算费用与弱非线性模型的方法相似。我们应用这个求解器来模拟倒转的火焰锋面,并在适当的限制下比较Kuramoto-Sivashinsky模型和无坐标模型的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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