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Convection surrounding mesoscale ionospheric flow channels

机译:围绕中尺度对流电离层流渠道

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We evaluate data from the European Incoherent Scatter (EISCAT) Svalbard radar (ESR) and Defense Meteorological Satellite Program (DMSP) spacecraft coupled with data from the Super Dual Auroral Radar Network (SuperDARN) polar cap convection patterns in order to study how the ionospheric convection evolves around a sequence of transient, mesoscale flow channel events in the duskside of the cusp inflow region. On a northwestward convection background for the interplanetary magnetic field (IMF) By positive and Bz negative, a sequence of three eastward flow channels formed over the course of 1 hour in response to three sharp IMF rotations to IMF By negative and IMF Bz positive. The first and third channels, due to IMF By negative periods of ~13 min and >30 min, respectively, develop in a similar manner: they span the entire ESR field of view and widen poleward with increasing time elapsed since their first appearance until the IMF rotates back. The convection patterns are consistent with the line-of-sight data from the ESR and DMSP within a 10 min adaption time. The flow lines form a twin-vortex flow, with the observed channel being the twin vortices' center flow. The fitting algorithm was pushed to its limits in terms of spatial resolution in this study. During portions of the channel events, the suggested twin-cell flow is not in agreement with our physical interpretation of the flow channels being reconnection events because cell closure is suggested across an anticipated nonreconnecting open-closed boundary. For these segments, we present simulated patterns which have been arrived at by a combination of looking at the raw data and examining the fitted convection patterns.
机译:我们从欧洲不连贯的评估数据雷达散射(EISCAT)斯瓦尔巴特群岛(ESR)和国防气象卫星计划(DMSP)航天器从超级双加上数据极光雷达网络(SuperDARN)极地冰冠为了研究对流模式电离层对流发展序列瞬态,中尺度流通道事件尖端的duskside流入地区。向西北方对流背景的通过积极的行星际磁场(IMF)和Bz -三东的序列流渠道形成的1小时应对三锐国际货币基金组织IMF旋转消极和IMF Bz积极。渠道,由于负面的国际货币基金组织(IMF) ~ 13分钟> 30分钟,分别发展相似的方式:他们横跨整个ESR的领域视图和扩大同增加时间向极自第一次出现之前运行国际货币基金组织(IMF)旋转。与视线的数据一致ESR和DMSP 10分钟内的适应时间。流线条形成twin-vortex流,观察到通道双漩涡的中心流。空间分辨率的限制研究。建议twin-cell流动不一致我们的流动通道的物理解释因为细胞关闭被重新连接事件在一个预期nonreconnecting建议开放闭合边界。目前模拟模式到达了看原始的结合数据和检查安装对流模式。

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