Wave breaking, dispersive shock wave, and phase shift for the defocusing complex modified KdV equation.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-01 DOI:10.1063/5.0231741
Ya-Hui Huang, Rui Guo
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Abstract

We study the problem of wave breaking for a simple wave propagating to a quiescent medium in the framework of the defocusing complex modified KdV (cmKdV) equation. It is assumed that a cubic root singularity is formed at the wave-breaking point. The dispersive regularization of wave breaking leads to the generation of a dispersive shock wave (DSW). We describe the DSW as a modulated periodic wave in the framework of the Gurevich-Pitaevskii approach based on the Whitham modulation theory. The generalized hodograph method is used to solve the Whitham equations, and the boundaries of the DSW are found. Most importantly, we determine the correct phase shift for the DSW from the generalized phase relationships and the modified Gurevich-Pitaevskii matching conditions, so that a complete description of the DSW is obtained rather than just its envelope. All of our analytical predictions agree well with the numerical simulations.

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离焦复变修正 KdV 方程的破波、色散冲击波和相移。
我们在离焦复修正 KdV(cmKdV)方程的框架内研究了向静态介质传播的简单波的破波问题。假定在破波点形成立方根奇点。破波的色散正则化导致色散冲击波(DSW)的产生。我们在基于 Whitham 调制理论的 Gurevich-Pitaevskii 方法框架内,将频散冲击波描述为调制周期波。我们使用广义霍德图法来求解惠瑟姆方程,并找到了 DSW 的边界。最重要的是,我们根据广义相位关系和修改后的古列维奇-皮塔耶夫斯基匹配条件确定了 DSW 的正确相移,从而获得了 DSW 的完整描述,而不仅仅是其包络线。我们的所有分析预测都与数值模拟结果吻合。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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