非均质介质中带有平流的二维移动对比结构的演变

IF 0.4 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
A. A. Bykov
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引用次数: 0

摘要

摘要 我们考虑了非均质介质中反应-平流-扩散方程的二维准初值-边界问题的内部过渡层的演化问题。结果表明,在渐近级数的零(主)阶,内部过渡层的位置由汉密尔顿-贾科比方程描述。在平衡水平的限制范围内,势能是作为源密度函数的积分来计算的。过渡层前线的演变方式与短波(几何光学)渐近学中波在非均质介质中传播问题的常数-埃科纳线(或波前线)的演变方式相同。找到了零阶和一阶渐近序列之和。评估了对比结构的破坏时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evolution of a Two-Dimensional Moving Contrast Structure in an Inhomogeneous Medium with Advection

Evolution of a Two-Dimensional Moving Contrast Structure in an Inhomogeneous Medium with Advection

Evolution of a Two-Dimensional Moving Contrast Structure in an Inhomogeneous Medium with Advection

We consider the problem of evolution of the internal transition layer for two-dimensional quasilinear initial-boundary value problem for the reaction-advection-diffusion equation in an inhomogeneous medium with a small parameter for higher derivatives. It is shown that in the zero (principal) order of the asymptotic series, the position of the internal transition layer is described by the Hamilton–Jacobi equation. The potential is calculated as an integral of the source density function within the limits of the equilibrium levels. The front line of the transition layer evolves in the same way as the constant-eikonal line (or wavefront line) for the problem of wave propagation in an inhomogeneous medium in short-wave (geometro-optical) asymptotics. The sum of the zero-and first-order asymptotic series is found. The destruction time of the contrast structure is evaluated.

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来源期刊
Moscow University Physics Bulletin
Moscow University Physics Bulletin PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.70
自引率
0.00%
发文量
129
审稿时长
6-12 weeks
期刊介绍: Moscow University Physics Bulletin publishes original papers (reviews, articles, and brief communications) in the following fields of experimental and theoretical physics: theoretical and mathematical physics; physics of nuclei and elementary particles; radiophysics, electronics, acoustics; optics and spectroscopy; laser physics; condensed matter physics; chemical physics, physical kinetics, and plasma physics; biophysics and medical physics; astronomy, astrophysics, and cosmology; physics of the Earth’s, atmosphere, and hydrosphere.
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