Aerosol Optical Properties of Typical Areas of the World Based on CALIPSO Satellite Remote Sensing Data

被引:1
作者
Mao Qianjun [1 ]
Jin Suisui [1 ]
Zhang Hengxing [1 ]
机构
[1] Wuhan Univ Sci & Technol, Sch Urban Construct, Wuhan 430065, Hubei, Peoples R China
关键词
remote sensing; global scope; aerosol optical depth; CALIPSO satellite; depolarization ratio; color ratio; TRENDS; MODIS;
D O I
10.3788/LOP202158.2428002
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Spatial distribution characteristics and seasonal attributes of aerosol optical properties in typical regions around the world are studied through the statistical analysis of multiple aerosol optical parameters using two-level aerosol layer products provided by the cloud-aerosol lidar and infrared pathfinder satellite observation (CALIPSO) satellite remote sensing data from 2009 to 2018. Results show that the monthly averages of the aerosol optical depth (AOD) in Saudi Arabia and India are unimodal, reaching a peak from June to July; the monthly average changes of the AOD in China and Central Africa are bimodal, with the highest values appearing from April to June and from December to January. The regional difference between the particulate depolarization ratio (PDR) and color ratio (CR) is the degree of irregularity of particles, which is the largest in Brazil with a PDR value of 0.5-0.7. In China, India, and Indonesia, fine-mode particles are mainly encountered with a CR value of 0.1-0.2. During the DJF and MAM periods, the nonspherical trend of particles in Saudi Arabia was the strongest, and during the JJA and SON periods, the particles in Saudi Arabia and Central Africa had the largest particle size with a CR value ranging from 0.756 to 0.829. The irregularity of aerosol particles in each region shows an increasing trend, and the variation range of the trend coefficient is 0.01-0.025; the increasing trend is most obvious in Brazil, and the particle size shows a weak downward trend.
引用
收藏
页数:8
相关论文
共 11 条
[1]  
[Anonymous], 2014, ATMOS CHEM PHYS, DOI [10.5194/acpd-14-26619-201, DOI 10.5194/ACPD-14-26619-201]
[2]   Retrieval of Fine Mode Aerosol Optical Depth Based on Satellite Polarization Remote Sensing [J].
Gao Jianan ;
Li Liping ;
Cui Tingwei ;
Chen Chen .
LASER & OPTOELECTRONICS PROGRESS, 2020, 57 (03)
[3]  
Jones PD, 1988, J CLIMATE, V1, P654, DOI 10.1175/1520-0442(1988)001<0654:HSATVR>2.0.CO
[4]  
2
[5]   Applicability of MODIS C061 Aerosol Optical Depth Products in Xi'an Region [J].
Liu Jingjing ;
Liu Yun ;
Wang Guoying ;
Hua Dengxin ;
Wang Jun ;
Yan Qing ;
He Tingyao ;
Gao Fei .
ACTA OPTICA SINICA, 2019, 39 (10)
[6]   Comparison of AOD between CALIPSO and MODIS: significant differences over major dust and biomass burning regions [J].
Ma, X. ;
Bartlett, K. ;
Harmon, K. ;
Yu, F. .
ATMOSPHERIC MEASUREMENT TECHNIQUES, 2013, 6 (09) :2391-2401
[7]   Recent global aerosol optical depth variations and trends - A comparative study using MODIS and MISR level 3 datasets [J].
Mehta, Manu ;
Singh, Ritu ;
Singh, Ankit ;
Singh, Narendra ;
Anshumali .
REMOTE SENSING OF ENVIRONMENT, 2016, 181 :137-150
[8]   Characteristics of Aerosol Vertical Distribution over the Yangtze River Delta Region of China in 2018 [J].
Shen J. ;
Cao N.-W. .
Huanjing Kexue/Environmental Science, 2019, 40 (11) :4743-4754
[9]  
[沈仙霞 Shen Xianxia], 2014, [环境科学学报, Acta Scientiae Circumstantiae], V34, P582
[10]  
[徐成鹏 Xu Chengpeng], 2014, [中国沙漠, Journal of Desert Research], V34, P1353