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DOI10.1007/s11442-015-1203-x
Variations in the oxygen isotopic composition of precipitation in the Tianshan Mountains region and their significance for the Westerly circulation
Liu Xiaokang; Rao Zhiguo; Zhang Xiaojian; Huang Wei; Chen Jianhui; Chen Fahu
发表日期2015
ISSN1009-637X
卷号25期号:7页码:801-816
英文摘要

Proxy records of the oxygen isotopic composition of meteorological precipitation (delta O-18(p)) preserved in archives such as ice cores, lacustrine carbonates and stalagmite calcite are important for paleoclimatic studies. Therefore, knowledge of the variations and controlling mechanisms of modern delta O-18(p) on different time scales is necessary. Here, we investigate the linear correlations between delta O-18(p) and corresponding temperature and precipitation on monthly and inter-annual timescales, using data from the Urumqi (1986-2003) and Hotan stations of the Global Network of Isotopes in Precipitation (GNIP), and delta O-18 data from 4 ice cores in the adjacent Tianshan Mountains. Consistent with previous reported results, modern delta O-18(p) variations on a seasonal time scale in the Tianshan region are mainly controlled by a 'temperature effect' (indicated by a significant positive correlation between delta O-18(p) and temperature), with more positive delta O-18(p) values occurring in summer. However, on an inter-annual timescale, there is a weak inverse correlation between weighted average annual delta O-18(p) and annual average temperature at Urumqi station. This finding is supported by the inversely varying trends of delta O-18 data from 4 ice cores in the central and eastern Tianshan Mountains compared to annual average temperatures in the same region during the past 40-50 years. The data from Urumqi station and the 4 ice cores demonstrate that there is inverse correlation between delta O-18(p) and temperature on inter-annual to decadal time scales. Analysis of water vapor sources and pathways for the warm year of 1997 and the cold year of 1988 reveal that relatively more water vapor for the Tianshan region was derived from long-distance transport from high-latitude sources than during the warm year of 1997; and that more water vapor was transported from more proximal sources from mid- to low-latitude areas during the cold year of 1988. In addition, the delta O-18(p) values are more negative in the high latitude areas than those in mid- to low-latitude areas in the Eurasian continent at the upper wind direction of Tianshan Mountains region, according to the weighted averaged warm season (May to September) delta O-18(p) values for 14 GNIP stations in the years 1997 and 1988. Due to the distribution of delta O-18(p) within the Eurasian continent, the relative shift of water vapor sources between warm and cold years convincingly explains the observed variations of delta O-18(p) in the Tianshan Mountains region. Therefore, we conclude that variations in delta O-18(p) in this region are mainly controlled by changes in water vapor sources which are ultimately caused by northward and southward shifts in the Westerly circulation.


英文关键词Tianshan Mountains;Urumqi;delta O-18(p);water vapor sources;Westerly circulation
语种英语
WOS研究方向Physical Geography
WOS类目Geography, Physical
WOS记录号WOS:000354136200003
来源期刊JOURNAL OF GEOGRAPHICAL SCIENCES
来源机构兰州大学 ; 中国科学院青藏高原研究所
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/1931
推荐引用方式
GB/T 7714
Liu Xiaokang,Rao Zhiguo,Zhang Xiaojian,et al. Variations in the oxygen isotopic composition of precipitation in the Tianshan Mountains region and their significance for the Westerly circulation[J]. 兰州大学, 中国科学院青藏高原研究所,2015,25(7):801-816.
APA Liu Xiaokang,Rao Zhiguo,Zhang Xiaojian,Huang Wei,Chen Jianhui,&Chen Fahu.(2015).Variations in the oxygen isotopic composition of precipitation in the Tianshan Mountains region and their significance for the Westerly circulation.JOURNAL OF GEOGRAPHICAL SCIENCES,25(7),801-816.
MLA Liu Xiaokang,et al."Variations in the oxygen isotopic composition of precipitation in the Tianshan Mountains region and their significance for the Westerly circulation".JOURNAL OF GEOGRAPHICAL SCIENCES 25.7(2015):801-816.
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