Effects of Indian Ocean Dipole (IOD) on Stratosphere compared with that of Indian Ocean Basin Mode (IOBM)
编号:435 稿件编号:1556 访问权限:仅限参会人 更新:2021-06-10 21:47:08 浏览:536次 张贴报告

报告开始:2021年07月10日 11:50 (Asia/Shanghai)

报告时间:5min

所在会议:[SP] 张贴报告专场 » [SP-11] 主题11、大气科学 墙报

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摘要
The impact of the Indian Ocean sea surface temperature (SST) on stratosphere has received extensive attention, yet mainly focused on the impact of Indian Ocean warming. The warming is contributed by the increasing trend of positive phase of Indian Ocean basin mode (IOBM) and Indian Ocean dipole mode (IOD), respectively characterized by greater SST magnitude and gradient. IOD can significantly affect tropospheric climates while its impact on stratosphere needs more investigation. This study investigates the impact of incensement of IOD positive events on stratosphere and compared with that of IOBM, using Whole Atmosphere Community Climate Model version 4 (WACCM4). Results show the IOD (IOBM) moistens (dries) tropical lower stratosphere as they cause different cold-point tropopause temperature (CPTT) responses. Specifically, IOD (IOBM) induces a local anomalous Walker (Hadley) circulation, thus positive (negative) CPTT appears over eastern (entire) Indian Ocean and causes water vapor (drier air) entering stratosphere. Both modes enhance the northern stratospheric polar vortex, which can be attributed to weakened wave1 activity. The impact of IOD equals to that of IOBM although SST anomalies of IOD are much smaller. Our results imply that, for the impact of the Indian Ocean warming on the Northern Hemisphere stratosphere, the Indian Ocean SST gradient is more important than the Indian Ocean SST magnitude. Both modes weaken the southern stratospheric polar vortex, but IOD’s effect is insignificant since its wave activities responses are excessively weaker. Contrary to the northern stratosphere, the impact of the Indian Ocean SST magnitude on southern stratosphere is more important.
 
关键字
热带印度洋增暖,印度洋偶极子,平流层水汽,平流层极涡
报告人
黄睿
兰州大学大气科学学院

稿件作者
黄睿 兰州大学大气科学学院
田文寿 兰州大学大气科学学院
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