首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >FORMATION OF REGIONS WITH HIGH ENERGY AND PRESSURE GRADIENTS AT THE FREE SURFACE OF LIQUID DIELECTRIC IN A TANGENTIAL ELECTRIC FIELD
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FORMATION OF REGIONS WITH HIGH ENERGY AND PRESSURE GRADIENTS AT THE FREE SURFACE OF LIQUID DIELECTRIC IN A TANGENTIAL ELECTRIC FIELD

机译:切线电场中液体介电自由表面上高能和高压梯度区域的形成

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摘要

The nonlinear dynamics of the free surface of an ideal incompressible non-conducting fluid with a high dielectric constant subjected to a strong horizontal electric field is simulated using the method of conformal transformations. It is shown that in the initial stage of interaction of counter-propagating periodic waves of significant amplitude, there is a direct energy cascade leading to energy transfer to small scales. This results in the formation of regions with a steep wave front at the fluid surface, in which the dynamic pressure and the pressure exerted by the electric field undergo a discontinuity. It has been demonstrated that the formation of regions with high gradients of the electric field and fluid velocity is accompanied by breaking of surface waves; the boundary inclination angle tends to 90au broken vertical bar, and the surface curvature increases without bound.
机译:使用保形变换的方法模拟了理想的不可压缩的非导电流体的自由表面的非线性动力学,该流体具有高的介电常数,受到强的水平电场作用。结果表明,在反向传播的,幅度较大的周期性波相互作用的初始阶段,存在直接的能量级联,导致能量转移到小规模。这导致在流体表面处形成具有陡峭波前的区域,其中动压力和电场施加的压力不连续。已经证明,电场和流体速度梯度高的区域的形成伴随着表面波的破裂;边界倾斜角趋于90au折断垂直杆,并且表面曲率无限制地增加。

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