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首页> 外文期刊>Journal of Applied Remote Sensing >Impacts of the binary typhoons on upper ocean environments in November 2007
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Impacts of the binary typhoons on upper ocean environments in November 2007

机译:2007年11月的二元台风对上层海洋环境的影响

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Using multiple satellite observations, Argo floats profiles, and one-dimensional (1-D) ocean mixed layer model, this study systematically investigated the impacts of the binary typhoons Hagibis and Mitag [which coexisted respectively in the South China Sea (SCS) and western North Pacific (WNP) during November, 22 to 26, 2007] on upper ocean environments. It was observed that intense Ekman pumping and two mesoscale cold, cyclonic eddies, which, induced by long forcing time of strong wind stress curls, appeared respectively in two certain areas instead of after the binary typhoons' trails. Both cyclonic eddies retained for ~39 days, accompanied with maximum sea surface height anomaly (SSHA) reduction of ~25 cm induced by Hagibis and of ~44 cm induced by Mitag, respectively. The largest sea surface temperature (SST) drop of 7℃ and 2℃, the maximum chlorophyll a (Chl-a) enhancement respectively was >20 times and ~3 times in these two eddies' regions induced by Typhoon Hagibis and Mitag, respectively. The results of the 1-D ocean mixed layer model showed that, given its 84 h forcing time, the simulated MLT cooling and mixed layer deepening induced by Hagibis were ~-2.8℃ and 45 m, respectively, ~-0.5℃ and 25 m for Mitag at its 66 h forcing time. This work provides convincing evidences that typhoons, which appear frequently in the SCS and the WNP, play a notable role in the activities of mesoscale eddies in these areas.
机译:本研究使用多个卫星观测资料,Argo漂浮剖面和一维(1-D)海洋混合层模型,系统地研究了二元台风Hagibis和Mitag [分别在南中国海(SCS)和西部共存]的影响。在2007年11月22日至26日的北太平洋(WNP)上空的海洋环境。观察到,强烈的埃克曼抽水和两个中尺度的冷旋风涡流,是由长时间的强风应力卷曲的强迫时间引起的,它们分别出现在两个特定区域,而不是在二元台风之后。两个旋风涡流都保留了约39天,同时最大的海面高度异常(SSHA)减少了由Hagibis引起的〜25 cm和由Mitag引起的〜44 cm。在台风哈吉比和米塔格引起的这两个涡流区,最大的海表温度(SST)下降分别为7℃和2℃,最大叶绿素a(Chl-a)增强分别是> 20倍和〜3倍。一维海洋混合层模型的结果表明,给定的强迫时间为84 h,哈吉比斯引起的模拟MLT冷却和混合层加深分别为〜-2.8℃和45 m,〜-0.5℃和25 m。 Mitag在其66小时的施力时间。这项工作提供了令人信服的证据,台风经常出现在南海和南太平洋地区,在这些地区的中尺度涡旋活动中起着重要作用。

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