赤道等离子体气泡的数值模拟:垂直风和随机背景噪声扰动的影响

Yunzhou Zhu, Q. Tang, Tong Xu, Yi Liu, Chen Zhou, Zhongxin Deng, Yuqiang Zhang, Zhengyu Zhao, Fengsi Wei, Bin Xu, Shuji Sun
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引用次数: 0

摘要

电离层中广泛存在各种小振幅波,它们对赤道等离子体气泡的演化有重要影响。本文模拟了波长为 125 千米和 250 千米的垂直中性风扰动所产生的赤道等离子体气泡(EPB),并比较了等离子体气泡结构与背景密度随机噪声扰动下等离子体气泡结构的形态特征。数值结果表明,垂直风和随机背景噪声扰动都能促进等离子体气泡的生长,而附加随机背景噪声下的扰动能更快地促进等离子体气泡结构的生长。此外,还成功获得了分叉 EPB 结构的几个非线性行为过程,包括分叉、捏合和小尺度湍流结构。我们的模拟捕捉到了低密度等离子体结构内的超音速流动,其特点是垂直速度约为 1.5 km/s,这与文献中的实验研究结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of the equatorial plasma bubble: the effect of seeding by the vertical winds and random background noise perturbations
A wide variety of small-amplitude waves widely exist in the ionosphere and have significant effects on the evolution of equatorial plasma bubbles. In this paper, we simulated equatorial plasma bubbles (EPB) seeded by vertical neutral wind perturbations with wavelengths of 125 km and 250 km, and compared the morphology characteristics of plasma bubble structures with those under random noise perturbations in the background density. The numerical results showed that both vertical winds and random background noise perturbations can contribute to the growth of plasma bubbles, and the perturbations under additional random background noise can promote the growth of the plasma bubble structures faster. Additionally, several processes of the nonlinear behavior of bifurcated EPB structures, including bifurcation, pinching, and small-scale turbulent structures, were successfully obtained. Our simulation captured supersonic flows within the low-density plasma structures characterized by vertical velocities of about 1.5 km/s, which is consistent with experimental studies found in the literature.
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