由东南亚观测推断的热层中性风和赤道电喷流在反转前增强中的作用

IF 2.9 3区 地球科学
P. Abadi, Y. Otsuka, HuiXin Liu, K. Hozumi, D. R. Martinigrum, P. Jamjareegulgarn, Le Truong Thanh, R. Otadoy
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引用次数: 8

摘要

已有研究认为,热层中性风和日落附近的赤道电喷流(EEJ)在前反转增强(PRE -reversal enhancement, PRE)机制中都起着重要作用。本研究利用2010-2013年3 - 4月和9 - 10月在东南亚赤道地区的观测资料,探讨了东中性风和EEJ对PRE强度的影响。我们的分析采用重力场和稳态海洋环流探测器(GOCE)卫星收集的数据,确定了在东经90°-130°E的黄昏扇区,海拔~250 km(底部F区)的纬向(东西方向)中性风。三个电离层探测仪,在春丰(浸晚)。: 3.0°N)在泰国,在北寮(倾角较晚)。:北纬1.7°),在越南和宿雾(倾角较晚)。: 3.0°N),提供了我们用来推导PRE强度的数据。来自两个磁力计的数据-在普吉岛(倾角较晚)。: 0.1°S),在泰国和Kototabang(较晚)。: 10.3°S),用于估计EEJ强度。我们的研究特别集中在具有磁性安静条件的日子。结果表明,东中性风和EEJ均与PRE密切相关;其相互关系系数分别为0.42和0.47。它们之间的相互关系较弱,东向中性风与EEJ的相互相关系数仅为0.26。我们的研究结果表明,东中性风和日落附近的EEJ都参与了PRE机制。然而,基于这两个参数之间的弱关系,它们似乎是相互独立的。因此,风和EEJ可能是独立地影响PRE的震级,它们的影响相互平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Roles of thermospheric neutral wind and equatorial electrojet in pre-reversal enhancement, deduced from observations in Southeast Asia

Roles of thermospheric neutral wind and equatorial electrojet in pre-reversal enhancement, deduced from observations in Southeast Asia

Previous studies have proposed that both the thermospheric neutral wind and the equatorial electrojet (EEJ) near sunset play important roles in the pre-reversal enhancement (PRE) mechanism. In this study, we have used observations made in the equatorial region of Southeast Asia during March–April and September–October in 2010–2013 to investigate influences of the eastward neutral wind and the EEJ on the PRE’s strength. Our analysis employs data collected by the Gravity Field and Steady-State Ocean Circulation Explorer (GOCE) satellite to determine the zonal (east-west direction) neutral wind at an altitude of ~250 km (bottomside F region) at longitudes of 90°–130°E in the dusk sector. Three ionosondes, at Chumphon (dip lat.: 3.0°N) in Thailand, at Bac Lieu (dip lat.: 1.7°N) in Vietnam, and at Cebu (dip lat.: 3.0°N) in Philippines, provided the data we have used to derive the PRE strength. Data from two magnetometers — at Phuket (dip lat.: 0.1°S) in Thailand and at Kototabang (dip lat.: 10.3°S) in Indonesia — were used to estimate the EEJ strength. Our study is focused particularly on days with magnetically quiet conditions. We have found that the eastward neutral wind and the EEJ are both closely correlated with the PRE; their cross-correlation coefficients with it are, respectively, 0.42 and 0.47. Their relationship with each other is weaker: the cross-correlation coefficient between the eastward neutral wind and the EEJ is just 0.26. Our findings suggest that both the eastward neutral wind and the EEJ near sunset are involved in the PRE mechanism. Based on the weak relationship between these two parameters, however, they appear to be significantly independent of each other. Thus, the wind and the EEJ are likely to be influencing the PRE magnitude independently, their effects balancing each other.

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来源期刊
Earth and Planetary Physics
Earth and Planetary Physics GEOSCIENCES, MULTIDISCIPLINARY-
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