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Remote control of sea surface temperature on the variability of tropical cyclone activity affecting Vietnam's coastline

机译:海面温度对影响越南海岸线的热带气旋活动变异性的遥控

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This study examines the teleconnection between sea surface temperature (SST) in different ocean regions and tropical cyclone (TC) activity affecting Vietnam's coastal region. Using spatial correlation and principal component analyses, it is found that the variability of TCs affecting Vietnam during 1982-2018 is remotely connected with SST in the Indian Ocean, the southwestern Pacific Ocean, and the northern Philippine Sea. Among the three regions, SST in the northern Philippine Sea displays the most significant inverse relationship with TC activity in the South China Sea (SCS), with lower June-November TC accumulated energy (ACE) for warmer northern Philippine Sea SST. Further analyses of large-scale atmospheric circulations show that this teleconnection between the northern Philippine Sea SST and TC activity in the SCS is linked to the East Asian subtropical jet (EASJ). Principal component analyses of the 200-hPa zonal wind associated with EASJ capture indeed a strong relationship between the second principal component, which characterizes the EASJ intensity, and ACE. Specifically, higher EASJ intensity corresponding to colder northern Philippine Sea SST would enhance large-scale ascending motion and low-level cyclonic anomalies in the SCS, which are favorable for TC formation and result in an overall increased ACE. Examination of the correlation between this second principal component and the northern Philippine Sea SST confirms that this correlation is statistically significant at a 95% confidence level. In this regard, these results support the Pacific-Japan teleconnection between the northern Philippine Sea SST and TC activity in the SCS.
机译:本研究探讨了影响越南沿海地区的不同海域海面温度(SST)与热带气旋(TC)活动之间的遥控。使用空间相关和主要成分分析,发现影响越南1982 - 2018年的TCS的可变性与印度洋,西南太平洋和菲律宾北部海洋的SST远程连接。在菲律宾北部的三个地区中,SST展示了南海(SCS)中与TC活动的最明显的反相关系,为6月至11月TC累积能源(ACE)为菲律宾海SST。进一步分析大型大气循环的分析表明,菲律宾海洋SST和TC活性之间的这种遥控器与东亚亚热带射流(EASJ)相关联。与EASJ相关的200 HPA区域风的主成分分析实际上是第二主成分之间的强大关系,其特征在于EASJ强度和ACE。具体而言,对应于菲律宾北部海洋SST的更高的EASJ强度将增强SCS中的大规模上升运动和低水平的旋风异常,这有利于TC形成并导致总体增加的ACE。检查第二个主要成分与菲律宾北部海洋SST之间的相关性证实,这种相关性在统计学上具有95%的置信水平。在这方面,这些结果支持菲律宾北部海洋SST和SCS中的TC活性之间的太平洋日本遥联连接。

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    《Oceanographic Literature Review》 |2021年第5期|968-969|共2页
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