Periodical Climate Deduced from Stalagmite Oxygen Isotope in Southern China
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Periodical Climate Deduced from Stalagmite Oxygen Isotope in Southern China
Acta Scientiarum Naturalium Universitatis SunYatseniVol. 51, Issue 3, Pages: 114-120(2012)
作者机构:
1. 中山大学地球科学系,广东,广州,510275
2. 中山大学广东省地质过程与矿产资源探查重点实验室,广东,广州,510275
3. 国家海洋局南海海洋工程勘察与环境研究院,广东,广州,510300
4. 国家海洋局南海环境监测中心,广东,广州,510300
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DOI:
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Published:2012,
Published Online:25 May 2012,
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SU Zhihua, YANG Xiaoqiang, WANG Jianhua, et al. Periodical Climate Deduced from Stalagmite Oxygen Isotope in Southern China. [J]. Acta Scientiarum Naturalium Universitatis SunYatseni 51(3):114-120(2012)
DOI:
SU Zhihua, YANG Xiaoqiang, WANG Jianhua, et al. Periodical Climate Deduced from Stalagmite Oxygen Isotope in Southern China. [J]. Acta Scientiarum Naturalium Universitatis SunYatseni 51(3):114-120(2012)DOI:
Periodical Climate Deduced from Stalagmite Oxygen Isotope in Southern China
The continuous wavelet transform was introduced to assay the oxygen isotope sequences of stalagmites since the Last Glacial Maximum (~30 000 aBP) at Hulu Cave
Sanbao Cave
and Dongge Cave in South China. The result shows that the climate fluctuation in glacial period was more prominent than that in interglacial period. The periods of oxygen isotope in both Dongge Cave and Sanbao Cave were characterized by three stages during the Holocene. However
the length
as well as the intensity of oxygen isotope periods displayed significant difference between two caves. The reason is that the climate in Sanbao Cave region was only controlled by the East Asian Summer Monsoon (EASM)
while that in Dongge Cave region was jointly influenced by the Indian Summer Monsoon (ISM) and EASM. The weak periods in Dongge Cave may be correlated to the strong anti-phasing of the ISM and EASM. The climate transformation from stability to fluctuation at ~3 000 aBP was also presented by the analysis result.