首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Wave signatures in the midlatitude ionosphere during a sudden stratospheric warming of January 2010
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Wave signatures in the midlatitude ionosphere during a sudden stratospheric warming of January 2010

机译:在中间纬度电离层波签名在1月突然平流层变暖2010

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This paper presents a case study of the day-to-day variability in the midlatitude upper atmospheric ion temperature (~200-400 km) with a focus on variability resulting from meteorological forcing. The data are obtained by the Millstone Hill incoherent scatter radar (42.6°N, 288.5°E) on 18-31 January 2010, in coincidence with a major sudden stratospheric warming. We elucidate oscillations in ion temperature with both tidal periods (~8 h and ~12 h) and non-tidal periods (>24 h) by analyzing residuals between the observed temperatures and those expected from an empirical model. We present the spatial-temporal development of periodicities in ion temperature and discuss to what degree these periodicities might be related to the sudden stratospheric warming event. The spectral location and temporal evolution of periodicities with ~9.9-12.9 h and ~6.2-7.9 h suggest that they are related to the semidiurnal (12 h) and terdiurnal (8 h) tides that are enhanced during the sudden stratospheric warming. Periodicities with ~3-4 d and ~10-13 d are likely related to Rossby waves with 4 d and 10 d periods, while the strong periodicity observed at 16-17 h could result from the nonlinear interaction of the quasi 2 d wave with the semidiurnal tide. As planetary waves are not expected to propagate to altitudes of ~200-250 km, these experimental results raise questions about the potential mechanisms of coupling between the lower and upper atmosphere.
机译:本文提出一种日常的案例研究中间纬度上层大气的变化离子温度(~ 200 - 400公里)的关注变化产生的气象强迫。山非相干散射雷达(42.6°N, 288.5°E)2010年1月18-31巧合了主要突然平流层变暖。与潮汐振荡离子温度期(~ 8 h和~ 12 h)和non-tidal时期通过分析之间的残差(> 24 h)观察温度和那些期望从一个实证模型。周期的研究发展离子温度这些周期的研究和讨论到什么程度可能与突然的平流层气候变暖事件。进化与-12.9 ~ 9.9 h和周期的研究-7.9 ~ 6.2 h表明它们是相关的半日(12 h)和terdiurnal潮汐(8小时)增强在突然的平流层变暖。很可能与罗斯比波和4 d10 d期,而强烈的周期性观察到16 - 17 h的可能结果准二维波的非线性相互作用半日潮。将传播到海拔200 ~ - 250公里,这些实验结果提出问题潜在机制的耦合上下之间的气氛。

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