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首页> 外文期刊>Oceanographic Literature Review >Structure, dynamics, and trace gas variability within the asian summer monsoon anticyclone in the extreme el nino of 2015-2016
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Structure, dynamics, and trace gas variability within the asian summer monsoon anticyclone in the extreme el nino of 2015-2016

机译:2015 - 2016年亚洲夏季季郡季郡季郡季郡抗岩内的结构,动力学和痕量气体变异性

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A weak El Nino during 2014-2015 boreal winter developed as a strong boreal summer event in 2015 which continued and even enhanced during the following winter. In this work, the detailed changes in the structure, dynamics, and trace gases within the Asian summer monsoon anticyclone (ASMA) during the extreme El Nino of 2015- 2016 is delineated by using Aura Microwave Limb Sounder (MLS) measurements, COSMIC radio occultation (RO) temperature, and National Centers for Environmental Prediction (NCEP) reanalysis products. Our analysis concentrates only on the summer months of July and August 2015 when the Nino 3.4 index started to exceed values of 1.5. The results show that the ASMA structure was quite different in summer 2015 as compared to the long-term (2005-2014) mean. In July, the spatial extension of the ASMA is greater than the long-term mean in all the regions except over northeastern Asia, where it exhibits a strong southward shift in its position. The ASMA splits into two, and the western Pacific mode is evident in August. Interestingly, the subtropical westerly jet (STJ) shifted southward from its normal position over northeastern Asia, and as a result midlatitude air moved southward in 2015. Intense Rossby wave breaking events along with STJ are also found in July 2015. Due to these dynamical changes in the ASMA, pronounced changes in the ASMA tracers are noticed in 2015 compared to the long-term mean. A 30% (20 %) decrease in carbon monoxide (water vapor) at 100 hPa is observed in July over most of the ASMA region, whereas in August the drop is strongly concentrated at the edges of the ASMA. A prominent increase in O3 (>40 %) at 100 hPa is clearly evident within the ASMA in July, whereas in August the increase is strongly located (even at 121 hPa) over the western edges of the ASMA. Further, the temperature around the tropopause shows significant positive anomalies (~5 K) within the ASMA in 2015. The present results clearly reveal the El-Nino-induced dynamical changes caused significant changes in the trace gases within the ASMA in summer 2015.
机译:2014-2015博尔·冬季的弱势埃尔尼诺在2015年制定为一个强大的北方夏季活动,在接下来的冬季继续甚至加强。在这项工作中,通过使用Aura微波肢体发声器(MLS)测量,宇宙无线电掩星,亚洲夏季季风抗气旋(ASMA)内亚洲夏季季风抗岩石(ASMA)内的结构,动力学和痕量气体的详细变化是划定的(RO)温度,国家环境预测(NCEP)重新分析产物的国家中心。我们的分析仅在2015年7月和2015年8月的夏季浓缩,当时Nino 3.4索引开始超过1.5的价值。结果表明,与长期(2005-2014)的平均值相比,2015年夏天的ASMA结构与截至相比。 7月,ASMA的空间延伸大于所有地区的长期均值,除了东北亚洲,它在其位置展示了强大的南方班。 ASMA分为二,西太平洋模式在8月份很明显。有趣的是,亚热带的西风喷气机(STJ)从东北亚的正常位置向南转移,因此,2015年的中途空气在南南方向移动。2015年7月也发现了激烈的罗斯比波打破事件。由于这些动态变化,也发现了STJ。由于这些动态变化在ASMA中,与长期均值相比,2015年将注意到ASMA示踪剂的发音变化。在7月在大部分Asma地区观察到100hPA的一氧化碳(水蒸气)减少了30%(20%)减少,而8月份,在ASMA的边缘处,液滴在ASMA的边缘中浓缩。 7月份在ASMA内明显显而易见,在ASMA的突出中显而易见的o3(> 40%)显然显而易见,而8月份在ASMA的西方边缘,甚至在八月的增加(即使是121 HPA)。此外,2015年,Trophodeate周围的温度显示ASMA内的显着阳性异常(〜5 k)。目前的结果明显揭示了EL-NINO诱导的动态变化,在2015年夏季秋季ASMA内的痕量气体发生了重大变化。

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    《Oceanographic Literature Review》 |2021年第5期|981-981|共1页
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