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Atmospheric gravity waves in the Red Sea: A new hotspot

机译:红海中的大气重力波:新热点

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The region of the Middle East around the Red Sea (between 32° E and 44° E longitude and 12° N and 28° N latitude) is a currently undocumented hotspot for atmospheric gravity waves (AGWs). Satellite imagery shows evidence that this region is prone to relatively high occurrence of AGWs compared to other areas in the world, and reveals the spatial characteristics of these waves. The favorable conditions for wave propagation in this region are illustrated with three typical cases of AGWs propagating in the lower troposphere over the sea. Using weakly nonlinear long wave theory and the observed characteristic wavelengths we obtain phase speeds which are consistent with those observed and typical for AGWs, with the Korteweg-de Vries theory performing slightly better than Benjamin-Davis-Acrivos-Ono theory as far as phase speeds are concerned. ERS-SAR and Envisat-ASAR satellite data analysis between 1993 and 2008 reveals signatures consistent with horizontally propagating large-scale internal waves. These signatures cover the entire Red Sea and are more frequently observed between April and September, although they also occur during the rest of the year. The region's (seasonal) propagation conditions for AGWs, based upon average vertical atmospheric stratification profiles suggest that many of the signatures identified in the satellite images are atmospheric internal waves.
机译:红海周围的中东地区(东经32°至44°,北纬12°N至28°)是大气重力波(AGW)的目前尚无记录的热点。卫星图像显示的证据表明,与世界其他地区相比,该地区倾向于出现相对较高的AGW,并揭示了这些波的空间特征。在三个典型的AGW在对流层较低的海面上传播的情况下,说明了该区域内波传播的有利条件。使用弱非线性长波理论和观测到的特征波长,我们获得的相位速度与AGW观测到的和典型的相速度一致,在相速度方面,Korteweg-de Vries理论的性能略优于Benjamin-Davis-Acrivos-Ono理论。关注。 1993年至2008年之间的ERS-SAR和Envisat-ASAR卫星数据分析揭示了与水平传播的大型内波一致的特征。这些签名覆盖了整个红海,在4月至9月之间更为频繁地观察到,尽管它们也发生在该年的其余时间。基于平均垂直大气分层剖面的区域AGW的(季节性)传播条件表明,卫星图像中识别出的许多特征是大气内部波。

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