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Impacts of Typhoon Megi (2010) on the South China Sea

机译:梅吉台风(2010)对南海的影响

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In October 2010, typhoon Megi induced a profound cold wake of size 800 km by 500 km with sea surface temperature cooling of 8°C in the South China Sea (SCS). More interestingly, the cold wake shifted from the often rightward bias to both sides of the typhoon track and moved to left in a few days. Using satellite data, in situ measurements and numerical modeling based on the East Asian Seas Nowcast/Forecast System (EASNFS), we performed detailed investigations. To obtain realistic typhoon-strength atmospheric forcing, the EASNFS applied typhoon-resolving Weather Research and Forecasting (WRF) model wind field blended with global weather forecast winds from the U.S. Navy Operational Global Atmospheric Prediction System (NOGAPS). In addition to the already known impacts from the slow typhoon translation speed and shallow pre-exiting ocean thermocline, we found the importance of the unique geographical setting of the SCS and the NE monsoon. As the event happened in late October, NE monsoon already started and contributed to the southwestward ambient surface current. Together with the top-ographicβ effect, the cold wake shifted westward to the left of Megi’s track. It was also found that Megi expelled waters away from the SCS and manifested as a gush of internal Kelvin wave exporting waters through the Luzon Strait. The consequential sea level depression lasted and presented a favorable condition for cold dome development. Fission of the north-south elongated cold dome resulted afterward and produced two cold eddies that dissipated slowly thereafter.
机译:2010年10月,台风Megi在南中国海(SCS)造成了800 km×500 km的深冷冰雹,海面温度冷却了8°C。更有趣的是,冷风从通常向右的偏斜转移到台风轨道的两侧,并在几天内向左移动。我们使用卫星数据,基于东亚海洋临近预报/预报系统(EASNFS)的原位测量和数值模拟,进行了详细的调查。为了获得逼真的台风强度大气强迫,EASNFS应用了台风解析天气研究和预报(WRF)模型风场,并结合了来自美国海军作战全球大气预测系统(NOGAPS)的全球天气预报风。除了因缓慢的台风平移速度和浅的现存海洋温跃层带来的已知影响外,我们还发现了南海和东北季风独特的地理环境的重要性。由于该事件在10月下旬发生,NE季风已经开始并促进了西南向地表电流。连同地形β效应,冷尾向西移动到Megi轨道的左侧。还发现,梅吉驱逐了南海以外的水域,并表现为内部开尔文波通过吕宋海峡输出的涌出。随之而来的海平面下降持续了下来,并为冷穹顶的发展提供了有利条件。此后导致了南北延伸的冷穹顶的裂变,并产生了两个冷涡流,此后缓慢消散。

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