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Perspective on the northwestward shift of autumn tropical cyclogenesis locations over the western North Pacific from shifting ENSO

机译:从ENSO偏移看北太平洋西部秋季热带气旋形成位置西北偏移

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摘要

During the recent decades of satellite era, more tropical cyclogenesis locations (TCLs) were observed over the northwestern part of the western North Pacific (WNP), relative to the southeastern part, during the boreal autumn. This increase in TCLs over the northwestern WNP is largely attributed to the synergy of shifting El Nino-Southern Oscillation (ENSO) and the 1998 Pacific climate regime shift. Both central Pacific (CP) La Nina and CP El Nino have occurred more frequently since 1998, with only one eastern Pacific El Nino observed in autumn 2015. The change in the mean longitude of TCLs is closely linked to the ENSO diversity, whereas the change in the mean latitude is dominated by the warming of the WNP induced by an interdecadal tendency of CP La Nina-like events. The physical mechanisms responsible for this shifting ENSO-TCL linkage can be potentially explained by the tacit-and-mutual configurations between tropical upper-tropospheric trough and monsoon trough, on both interannual and interdecadal timescales, which is mainly due to the ENSO-related large-scale environment changes in ocean and atmosphere that modulate the WNP TCL.
机译:在近几十年的卫星时代,相对于东南部地区,在北部秋季期间,在北太平洋西部(WNP)的西北部观察到了更多的热带气旋发生位置(TCL)。西北WNP上TCL的增加主要归因于厄尔尼诺-南方涛动(ENSO)转移和1998年太平洋气候制度转移的协同作用。自1998年以来,中太平洋拉尼娜(CP)和拉尼娜(CP El Nino)发生率都更高,2015年秋季只有一个东太平洋厄尔尼诺现象。TCL的平均经度变化与ENSO多样性密切相关,而变化平均纬度是由CP La Nina样事件的年代际趋势引起的WNP变暖所主导。造成这种ENSO-TCL转换的物理机制可能是由热带对流层低谷和季风谷之间在年际和年代际时间尺度上的默认和相互配置来解释的,这主要是由于ENSO相关的大海洋和大气层的大规模环境变化调节了WNP TCL。

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