径向变电场作用下介电重力流体包围流液缸电动力稳定性的影响

IF 1 4区 物理与天体物理 Q3 PHYSICS, MATHEMATICAL
M. H. Hendy
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引用次数: 0

摘要

研究了变密度自重力介质流体圆柱体在径向变电场作用下的电动力稳定性关系。我们推导了所研究的所有模型的扰动。流体缸内外的电场在不同密度和波长下稳定系统。此外,磁场的使用被认为是抑制不稳定运动发生的潜在有效方法。当两个密度相等时,引力边际稳定性就出现了。在所有对称和非对称轴向扰动中,确定了每个波长的两个密度的稳定和不稳定区域。流动的影响是显著的和不稳定的:它减少了稳定区域,扩大了毛细轴对称不稳定区域。此外,我们确定了包含引力不稳定性的必要条件。结果是物理解释和分析,并证实了数值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the electrodynamic stability of streaming fluid cylinders surrounded by dielectric gravitational fluid under a radial-varying electric field

We study the relation between the electrodynamic stabilization of self-gravitating dielectric fluid cylinders with varying densities subjected to radially varying electric fields. We derive the perturbations for all models studied. The electric fields inside and outside the fluid cylinder stabilize the system across different densities and wavelengths. Additionally, the use of a magnetic field is identified as a potentially effective method to inhibit the onset of unstable motion. Gravitational marginal stability occurs when the two densities are equal. Stable and unstable regions are determined for two densities at each wavelength in all symmetric and nonsymmetric axial perturbations. The effect of streaming is significant and destabilizing: it reduces the stable regions and enlarges the capillary axisymmetric unstable domain. Furthermore, we identify the necessary conditions to contain gravitational instability. The results are interpreted physically and analytically, and are confirmed numerically.

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来源期刊
Theoretical and Mathematical Physics
Theoretical and Mathematical Physics 物理-物理:数学物理
CiteScore
1.60
自引率
20.00%
发文量
103
审稿时长
4-8 weeks
期刊介绍: Theoretical and Mathematical Physics covers quantum field theory and theory of elementary particles, fundamental problems of nuclear physics, many-body problems and statistical physics, nonrelativistic quantum mechanics, and basic problems of gravitation theory. Articles report on current developments in theoretical physics as well as related mathematical problems. Theoretical and Mathematical Physics is published in collaboration with the Steklov Mathematical Institute of the Russian Academy of Sciences.
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