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首页> 外文期刊>Astronomy reports >Hydrodynamical Aspects of the Formation of Spiral-Vortical Structures in Rotating Gaseous Disks
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Hydrodynamical Aspects of the Formation of Spiral-Vortical Structures in Rotating Gaseous Disks

机译:旋转气体盘形成螺旋涡体结构的流体动力学方面

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摘要

This paper is dedicated to numerical simulations of spiral-vortical structures in rotating gaseous disks using a simple model based on two-dimensional, non-stationary, barotropic Euler equations with a body force. The results suggest the possibility of a purely hydrodynamical basis for the formation and evolution of such structures. New, axially symmetric, stationary solutions of these equations are derived that modify known approximate solutions. These solutions with added small perturbations are used as initial data in the non-stationary problem, whose solution demonstrates the formation of density arms with bifurcation. The associated redistribution of angular momentum is analyzed. The correctness of laboratory experiments using shallow water to describe the formation of large-scale vortical structures in thin gaseous disks is confirmed. The computations are based on a special quasi-gas-dynamical regularization of the Euler equations in polar coordinates.
机译:本文旨在采用基于二维非平稳,管道波纹欧拉方程的简单模型旋转气体盘中的螺旋涡体结构的数值模拟。 结果表明这种结构的形成和演化的纯粹流动性基础的可能性。 导出新的,轴上对称的这些方程的固定解,以修改已知的近似解决方案。 这些具有添加的小扰动的解决方案用作非静止问题中的初始数据,其解决方案表明具有分叉的密度臂的形成。 分析了角动量的相关重新分布。 确认了实验室实验的正确性,以描述薄气体盘中的大规模涡旋结构的形成。 计算基于极性坐标中的欧拉方程的特殊准气体正则化。

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