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Numerical Simulation of the Wave Breaking Process on the Surface of a Dielectric Liquid in a Tangential Electric Field

机译:切向电场中介电液体表面波分解过程的数值模拟

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This work is devoted to numerical simulation of the process of interaction between nonlinear waves propagating along the free surface of dielectric liquid in a strong tangential electric field. The model is based on two assumptions: (1) the strong field limit, for which the effects of gravity and capillarity are neglected, and (2) the smallness of nonlinear effects. Results of the numerical simulation show that singular points are formed at the fluid boundary. A sharp drop of the boundary curvature occur in the spatially narrow regions. The amplitude and slope angles of the boundary inclination remain small. The spectral functions of the surface of the liquid acquire a power dependence, namely, $left|eta_{k}ight|^{2} sim k^{-5}$. Near the singularity, the boundary curvature demonstrates behavior typical for Moore’s singularities.
机译:这项工作致力于在强切线电场中沿着电介质液体自由表面传播的非线性波之间相互作用过程的数值模拟。该模型基于两个假设:(1)强磁场极限,忽略了重力和毛细管现象的影响,(2)非线性效应的较小性。数值模拟结果表明,在流体边界处形成了奇异点。边界曲率的急剧下降发生在空间狭窄的区域中。边界倾斜的幅度和倾斜角保持较小。液体表面的光谱函数具有功率相关性,即$ \ left | \ eta_ {k} \ right | ^ {2} \ sim k ^ {-5} $。在奇异点附近,边界曲率表明了摩尔奇异点的典型行为。

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