首页> 外文期刊>Asia-Pacific journal of atmospheric sciences >Impact of the Western North Pacific Subtropical High on the East Asian Monsoon Precipitation and the Indian Ocean Precipitation in the Boreal Summertime
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Impact of the Western North Pacific Subtropical High on the East Asian Monsoon Precipitation and the Indian Ocean Precipitation in the Boreal Summertime

机译:北方夏季西北太平洋副热带高压对东亚季风降水和印度洋降水的影响

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The western North Pacific subtropical high (WNPSH) is a crucial component of the East Asian summer monsoon (EASM) system and significantly influences the precipitation in East Asia. In this study, distinguished role of WNPSH on the EASM and Indian Ocean monsoon (IOM) are investigated. Based on the boreal summer mean field of 850-hPa geopotential height and its interannual variability, the WNPSH index (WNPSHI) is defined by the areaaveraged geopotential height over the region [110°-150°E, 15°-30°N]. The WNPSHI is significantly related to the precipitation over the East Asian monsoon (EAM) region [105°-150°E, 30°-40°N] and IOM region [70°-105°E, 5°-15°N]. Rainfalls over these two regions have good correlation with WNPSH developments and the geopotential height fields at 850 hPa related to the EAM precipitation and IOM precipitation have remarkably different teleconnection patterns in boreal summer. These features exhibit that EAM and IOM precipitations have different type of development processes associated with different type of WNPSH each other. Focusing on the relationships among the EAM precipitation, IOM precipitation, and the WNPSH variabilities, we assume that WNPSH and EAM precipitation are usually fluctuated simultaneously through the sea surface temperature (SST)-subtropical ridge-monsoon rainfall feedback, whereas the IOM precipitation varies through the different process. To clarify the relationships among WNPSH, EAM, and IOM, two cases are selected. The first one is the case that all of WNPSH, EAM, and IOM are in phase (WE(+)I(+)), and the second one is the case that WNPSH and EAM are in phase and WNPSH/EAM and IOM is out of phase (WE(+)I(-)). These two cases are connected to the thermal forcing associated with SST anomalies over the eastern Pacific and Indian Ocean. This different thermal forcing induces the change in circulation fields, and then anomalous circulation fields influence the moisture convergence over Asian monsoon regions interactively. There-fore, the monsoon rainfall may be changed according to the thermal conditions over the tropics.
机译:北太平洋副热带高压西部(WNPSH)是东亚夏季风(EASM)系统的重要组成部分,并显着影响东亚的降水。在这项研究中,对WNPSH在EASM和印度洋季风(IOM)上的杰出作用进行了研究。基于850hPa地势高度的夏季夏季平均场及其年际变化,WNPSH指数(WNPSHI)由该区域[110°-150°E,15°-30°N]上的平均地势高度定义。 WNPSHI与东亚季风(EAM)地区[105°-150°E,30°-40°N]和IOM地区[70°-105°E,5°-15°N]的降水显着相关。 。这两个地区的降雨与WNPSH的发展有很好的相关性,而在北半球夏季,与EAM降水和IOM降水有关的850 hPa的地势高度场具有明显不同的遥相关模式。这些特征表明,EAM和IOM降水具有与不同类型的WNPSH彼此相关的不同类型的发育过程。着眼于EAM降水,IOM降水和WNPSH变异之间的关系,我们假设WNPSH和EAM降水通常在海表温度(SST)-亚热带脊-季风降水反馈中同时波动,而IOM降水通过不同的过程。为了阐明WNPSH,EAM和IOM之间的关系,选择了两种情况。第一个是WNPSH,EAM和IOM全部同相(WE(+)I(+))的情况,第二个是WNPSH和EAM同相且WNPSH / EAM和IOM是同相的情况(WE(+)I(-))异相。这两种情况与东太平洋和印度洋上海温异常相关的热强迫有关。这种不同的热强迫会引起环流场的变化,然后异常的环流场会相互作用地影响亚洲季风区域的水分汇聚。因此,季风降雨可能会根据热带地区的热状况而改变。

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