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Fully nonlinear capillary-gravity solitary waves under a tangential electric field, Part Ⅱ: Dynamics

机译:切向电场下的完全非线性毛细管重力孤波,第二部分:动力学

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摘要

The stability and dynamics of two-dimensional fully nonlinear capillary–gravity solitary waves are studied when a uniform electric field is applied in the direction parallel to the undisturbed free surface of a dielectric fluid. For simplicity, we assume that the permittivity of the gas above the fluid is much smaller, therefore the two-layer problem can be reduced to be a one-layer one. The existence of fully localized solitary waves in deep water has been thoroughly studied in our previous work (Tao and Guo, 2014) via weakly nonlinear normal form analysis and fully nonlinear numerical computation. In the present paper, the stability and dynamics of the obtained solitary waves are investigated based on the time-dependent conformal map technique. Similar to the nonelectric capillary–gravity solitary waves, all depression waves, together with elevation waves featuring two big troughs connected by a small dimple, are found to be stable. Furthermore, head-on and overtaking collisions between stable solitary waves are studied via a numerical time integration.
机译:当在平行于电介质流体不受扰动的自由面的方向上施加均匀电场时,研究了二维完全非线性毛细管重力孤立波的稳定性和动力学。为简单起见,我们假设流体上方的气体的介电常数要小得多,因此可以将两层问题简化为一层问题。在我们之前的工作(Tao和Guo,2014)中,已经通过弱非线性法线形式分析和完全非线性数值计算对透水中完全局域孤立波的存在进行了深入研究。本文基于时变共形图技术研究了孤立波的稳定性和动力学。与非电毛细管重力孤波相似,所有的俯冲波以及具有两个大波谷并由一个小酒窝相连的高程波都被发现是稳定的。此外,通过数值时间积分研究了稳定孤立波之间的迎头碰撞和超车碰撞。

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