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Satellite detection of orographic gravity-wave activity in the winter subtropical stratosphere over Australia and Africa

机译:卫星探测澳大利亚和非洲冬季亚热带平流层的重力重力波活动

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摘要

Orographic gravity-wave (OGW) parameterizations in models produce waves over subtropical mountain ranges in Australia and Africa that propagate into the stratosphere during austral winter and deposit momentum, affecting weather and climate. Satellite sensors have measured stratospheric GWs for over a decade, yet find no evidence of these waves. So are parameterizations failing here? Here we argue that the short wavelengths of subtropical OGWs place them near or below the detection limits of satellite sensors. To test this hypothesis, we reanalyze nine years of stratospheric radiances from the Atmospheric Infrared Sounder (AIRS) on NASA's Aqua satellite during austral winter, applying new averaging techniques to maximize signal-to-noise and improve thresholds for OGW detection. Deep climatological enhancements in stratospheric OGW variance over specific mountain ranges in Australia and southern Africa are revealed for the first time, which exhibit temporal and vertical variations consistent with predicted OGW responses to varying background winds.
机译:模型中的地形重力波(OGW)参数化会在澳大利亚和非洲的亚热带山脉上产生波,这些波在南方冬季期间传播到平流层中,并沉积动量,从而影响天气和气候。卫星传感器已测量平流层GW已有十多年了,但找不到这些波的证据。那么参数化在这里失败了吗?在这里,我们认为亚热带OGW的短波长使它们接近或低于卫星传感器的检测极限。为了验证这一假设,我们重新分析了南方冬季NASA的Aqua卫星上的大气红外测深仪(AIRS)产生的平流层辐射的9年,应用了新的平均技术以最大化信噪比并改善OGW检测的阈值。首次揭示了澳大利亚和南部非洲特定山脉上平流层OGW的深层气候变化,其时空和垂直变化与预测的OGW对背景风的响应一致。

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