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首页> 外文期刊>Geophysical Research Letters >Imaging and modeling the ionospheric airglow response over Hawaii to the tsunami generated by the Tohoku earthquake of 11 March 2011
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Imaging and modeling the ionospheric airglow response over Hawaii to the tsunami generated by the Tohoku earthquake of 11 March 2011

机译:对夏威夷对2011年3月11日东北地震产生的海啸的电离层气辉响应进行成像和建模

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Although only centimeters in amplitude over the open ocean, tsunamis can generate appreciable wave amplitudes in the upper atmosphere, including the naturally occurring chemiluminescent airglow layers, due to the exponential decrease in density with altitude. Here, we present the first observation of the airglow tsunami signature, resulting from the 11 March 2011 Tohoku earthquake off the eastern coast of Japan. These images are taken using a wide-angle camera system located at the top of the Haleakala Volcano on Maui, Hawaii. They are correlated with GPS measurements of the total electron content from Hawaii GPS stations and the Jason-1 satellite. We find waves propagating in the airglow layer from the direction of the earthquake epicenter with a velocity that matches that of the ocean tsunami. The first ionospheric signature precedes the modeled ocean tsunami generated by the main shock by approximately one hour. These results demonstrate the utility of monitoring the Earth's airglow layers for tsunami detection and early warning.
机译:尽管在公海中振幅只有几厘米,但由于密度随海拔高度呈指数下降,海啸可在高层大气(包括自然发生的化学发光气辉层)中产生明显的波振幅。在这里,我们对日本东部沿海2011年3月11日东北地震产生的气辉海啸特征进行了首次观测。这些图像是使用位于夏威夷毛伊岛哈雷阿卡拉火山顶部的广角相机系统拍摄的。它们与来自夏威夷GPS站和Jason-1卫星的总电子含量的GPS测量相关。我们发现从地震震中方向在气辉层中传播的波速与海洋海啸的速度相匹配。电离层的第一个特征是在主震产生的模拟海啸之前大约一个小时。这些结果证明了监测海平面气层以进行海啸检测和预警的实用性。

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