Abstract

Cirrus clouds play a significant role in the Earth’s energy balance and in the hydrological cycle of the atmosphere. Here, a high-performance Micro Pulse Lidar was continuously used to investigate cirrus cloud formation and characteristics at Ali (32.50°N, 80.08°E; 4279 m), in the western Tibetan Plateau from 25 July to 23 September 2016, a time frame that spanned the prevalence and degeneration period of the Asian summer monsoon (ASM). The cirrus clouds frequently occurred with sharp fluctuations in the vertical distribution from 8 to 14 km above ground level (AGL) during the ASM period. In contrast, cirrus clouds were remarkably reduced and consistently existed near 10 km in September, when the ASM began subsiding due to the lack of a driving force that triggers ice formation. Approximately half of the cirrus clouds were caused by deep convective activity during the ASM period, which held one-third of total cirrus clouds during the whole measurement period. These anvil cirrus clouds have a liquid origin and are characterised by optically thicker clouds with Cloud Optical Depth values greater than 0.2, high depolarisation ratios and high lidar ratios. These observations indicate that, in agreement with other studies at mid-latitudes and in the Arctic, liquid origin cirrus could be associated with thicker, larger and more complex nonspherical ice crystals in comparison to in situ formed cirrus. Cold perturbations were responsible for the formation and evolution of the remaining two-thirds of cirrus clouds. These clouds were mostly associated with in situ formation of ice crystals, in the slow updrafts in the tropical transition layer over the Tibetan Plateau.

Details

Title
The role of ASM on the formation and properties of cirrus clouds over the Tibetan Plateau
Author
He, Qianshan 1 ; Zheng, Xiangdong 2 ; Li, Jian 3 ; Gao, Wei 4 ; Wang, Yanyu 5 ; Cheng, Tiantao 5 ; Pu, Jiawei 4 ; Liu, Jie 4 ; Li, Chengcai 6 

 Shanghai Meteorological Service, Shanghai, China;; Shanghai Key Laboratory of Meteorology and Health, Shanghai, China; 
 China Meteorological Administration, Chinese Academy of Meteorological Sciences, Beijing, China; 
 Chengdu University of Information and Technology, Chengdu, China; 
 Shanghai Meteorological Service, Shanghai, China; 
 Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering, Institute of Atmospheric Sciences Fudan University, Shanghai, China; 
 Laboratory for Climate and Ocean-Atmosphere Studies Department of Atmospheric and Oceanic Sciences School of Physics, Peking University, Beijing, China 
Publication year
2019
Publication date
Dec 2019
Publisher
Ubiquity Press
e-ISSN
16000889
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2351029360
Copyright
© 2019 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. This work is licensed under the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.