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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Capillary Electrodynamic Stability of Self-Gravitational Fluid Cylinder With Varying Electric Field
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Capillary Electrodynamic Stability of Self-Gravitational Fluid Cylinder With Varying Electric Field

机译:电场作用下自重力流体缸的毛细管电稳定性

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摘要

The instability of a self-gravitating fluid cylinder surrounded by a self-gravitating tenuous medium pervaded by transverse varying electric field is discussed under the combined effect of the capillary, self-gravitating, and electric forces. This has been done for all axisymmetric and nonaxisymmetric modes of perturbation. The problem is formulated and solved with excluding the singular solutions, and the stability criterion is derived. Several published works are obtained as limiting cases from the present general case and investigated, and moreover the results are interpreted physically. The model is stable due to the stabilizing effect of the transverse electric field in all modes of perturbation. The destabilizing effect of the capillary and self-gravitating forces is found in small domain in the axisymmetric perturbation. However, the stabilizing effects of the capillary and self-gravitating forces in large axisymmetric domains and in all nonaxisymmetric domains modify and improve the instability of the present model.
机译:在毛细作用力,自重和电场力的共同作用下,讨论了自重流体缸的不稳定性,该缸被横向变化的电场所渗透的自重微弱介质包围。对于所有轴对称和非轴对称的扰动模式都可以做到这一点。通过排除奇异解来制定和解决问题,并推导稳定性准则。从当前的一般案例中获得了几篇已发表的著作作为限制性案例并进行了调查,并且对结果进行了物理解释。由于在所有摄动模式下横向电场的稳定作用,该模型是稳定的。毛细血管的失稳作用和自重力在轴对称扰动的小范围内发现。但是,在大的轴对称区域和所有非轴对称区域中,毛细作用和自重作用力的稳定作用会改变并改善本模型的不稳定性。

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