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IndoPaeific remote forcing in summer rainfall variability over the South China Sea

机译:南海夏季IndoPaeific远程强迫对夏季降水的影响

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This study investigates summer rainfall variability in the South China Sea (SCS) region and the roles of remote sea surface temperature (SST) forcing in the tropical Indian and Pacific Ocean regions. The SCS summer rainfall displays a positive and negative relationship with simultaneous SST in the equatorial central Pacific (ECP) and the North Indian Ocean (NIO), respectively. Positive ECP SST anomalies induce an anomalous low-level cyclone over the SCS-western North Pacific as a Rossby-wave type response, leading to above-normal precipitation over northern SCS. Negative NIO SST anomalies contribute to anomalous cyclonic winds over the western North Pacific by an anomalous east-west vertical circulation north of the equator, favoring more rainfall over northern SCS. These NIO SST anomalies are closely related to preceding La Nina and El Nino events through the "atmospheric bridge". Thus, the NIO SST anomalies serve as a medium for an indirect impact of preceding ECP SST anomalies on the SCS summer rainfall variability. The ECP SST influence is identified to be dominant after 1990 and the NIO SST impact is relatively more important during 1980s. These Indo-Pacific SST effects are further investigated by conducting numerical experiments with an atmospheric general circulation model. The consistency between the numerical experiments and the observations enhances the credibility of the Indo-Pacific SST influence on the SCS summer rainfall variability.
机译:这项研究调查了南中国海(SCS)地区夏季降雨量的变化以及热带印度洋和太平洋地区偏远海面温度(SST)强迫的作用。南半球夏季降水量与赤道中太平洋(ECP)和北印度洋(NIO)同时海温的正负相关。 ECP SST的正异常导致南海北部-西太平洋上空发生异常的低空旋风,这是罗斯比波型响应,导致南北半球降水高于正常水平。 NIO SST的负异常是由赤道以北的东西向垂直垂直环流引起的,在北太平洋西部形成了异常的气旋风,有利于北SCS的降雨。这些NIO SST异常通过“大气桥”与先前的拉尼娜和厄尔尼诺事件密切相关。因此,NIO SST异常充当了先前ECP SST异常对SCS夏季降水变化的间接影响的媒介。在1990年代以后,ECP SST的影响被确定为主导,而在1980年代,NIO SST的影响相对更为重要。通过使用大气总循环模型进行数值实验,进一步研究了这些Indo-Pacific SST效应。数值实验和观测结果之间的一致性提高了印度洋-太平洋海温对南海夏季降水变化的影响的可信度。

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