EGU2020-18819
https://doi.org/10.5194/egusphere-egu2020-18819
EGU General Assembly 2020
© Author(s) 2020. This work is distributed under
the Creative Commons Attribution 4.0 License.

Decadal change in summer precipitation over the east of Northwest China and its associations with atmospheric circulations and sea surface temperatures

Shasha Shang1, Gaofeng Zhu1, Ruolin Li2, Jie Xu1, Juan Gu1, Huiling Chen1, Xiaowen Liu1, and Tuo Han1
Shasha Shang et al.
  • 1Lanzhou University, College of Earth and Environmental Sciences, China (shangshsh16@lzu.edu.cn)
  • 2Key Laboratory of Ecohydrology of Inland River Basins, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou, Gansu, China

As global warming has progressed, precipitation patterns over arid Northwest China have undergone significant change. In this study, changes in summer (JJA) precipitation over the eastern part of Northwest China (ENWC) from 1980 to 2014 were investigated using the China gridded monthly precipitation dataset (CN05.1). The results showed that summer precipitation over the ENWC experienced a decadal wet-to-dry shift in 1998. Westerlies played an important role in the upper atmospheric levels in terms of water vapor transport; the decadal variations in summer precipitation were principally controlled by the water vapor input from the ENWC's western boundary. In addition, the decadal variations in summer precipitation in the ENWC appear to be associated with a meridional teleconnection around 110°E and a zonal pattern over 45–60°N in the lower troposphere. These two teleconnections led to cyclonic anomalies in the ENWC and enhanced water vapor transport into the ENWC, resulting in above-normal precipitation during the 1989–1998 decadal period. Further, the warmer (colder) sea surface temperatures (SSTs) observed in the tropical Eastern Pacific correspond to the southward (northward) displacement of the Asian jet stream and a negative (positive) phase of the Silk Road pattern, resulting in a wet (dry) ENWC. Moreover, the SST anomalies in the North Atlantic and Northwest Pacific may affect summer precipitation over the ENWC via a zonal teleconnection in the middle troposphere. Details about the results will be presented in the conference.

How to cite: Shang, S., Zhu, G., Li, R., Xu, J., Gu, J., Chen, H., Liu, X., and Han, T.: Decadal change in summer precipitation over the east of Northwest China and its associations with atmospheric circulations and sea surface temperatures , EGU General Assembly 2020, Online, 4–8 May 2020, EGU2020-18819, https://doi.org/10.5194/egusphere-egu2020-18819, 2020