论文标题
水平电场中介电液体表面的波浪破裂
Wave breaking on the surface of a dielectric liquid in a horizontal electric field
论文作者
论文摘要
数值研究了针对未扰动边界的电场中介电液体的自由表面的弱非线性动力学。在强场模型的框架内,当不考虑毛细血管和重力的影响时,表明非线性表面波有破裂的趋势。由于表面波的崩溃,边界的曲率和局部电场的梯度在液体表面上经历无限的不连续性。边界倾斜度的角度仍然很小。与液体的介电常数相比,在给定方向传播的表面波的特征塌陷时间是计算的。结果表明,在介电常数的小和高值下,奇异性形成的时间无限增加。第一种情况对应于系统向中性稳定性方向的过渡(边界处的静电压力跳跃变为零)。在液体介电常数的高值下,塌陷时间也增加。这种效果与特殊流体运动的特殊状态有关,其中任意构型的非线性表面波的传播不会发生扭曲。对于接近五个的相对介电常数的液体,断裂时间达到最小值,即,对于此类液体的表面波的崩溃,最强烈地发生。
The weakly nonlinear dynamics of the free surface of a dielectric liquid in an electric field directed tangentially to the unperturbed boundary is investigated numerically. Within the framework of the strong field model, when the effects of capillarity and gravity are not taken into account, it is shown that nonlinear surface waves have a tendency to break. In result of the collapse of the surface waves, the curvature of the boundary and the gradient of the local electric field undergo infinite discontinuity on the surface of the liquid. The angles of the boundary inclination remain small. The characteristic collapse time of a surface wave traveling in a given direction is calculated versus the dielectric constant of the liquid. It is shown that the time of the singularity formation increases infinitely at small and high values of the dielectric constant. The first case corresponds to the transition of the system to the neutral stability regime (the jump in electrostatic pressure at the boundary turns into zero). At high values of the dielectric constant of the liquid, the collapse time also increases. This effect is associated with the realization of a special regime of fluid motion, in which the propagation of nonlinear surface waves of an arbitrary configuration occurs without distortions. For the liquids with relative permittivity close to five, the wave breaking time reaches a minimum, i.e., the collapse of the surface waves for such liquids occurs most intensively.