Temperature variability inferred from tree-ring widths in the Dabie Mountains of subtropical central China

被引:0
作者
Yonghong Zheng
Yong Zhang
Xuemei Shao
Zhi-Yong Yin
Jin Zhang
机构
[1] Wuhan University,School of Resources and Environmental Science
[2] Chinese Academy of Sciences,Institute of Geographic Sciences and Natural Resources Research
[3] University of San Diego,Department of Marine Science and Environmental Studies
来源
Trees | 2012年 / 26卷
关键词
Dabie Mountains; Subtropical China; Dendroclimatology; Huangshan pine; Temperature reconstruction;
D O I
暂无
中图分类号
学科分类号
摘要
A tree-ring width chronology was developed using the tree-ring cores of Huangshan pine (Pinus taiwanensis Hayata) from the Dabie Mountains, central China. Descriptive statistics of the chronology indicated that Huangshan pine showed a common signal likely associated to climate. A correlation analysis was conducted between the chronology and climate variables, and the results demonstrated that the radial growth was positively correlated to the February–July mean temperature. The February–July mean temperature was reconstructed from AD 1869 to 2008 for the Dabie Mountains. The reconstruction can explain 49.8 % of the variance for the calibration period (1959–2008). On the decadal timescale, for the reconstructed temperature during the reliable period 1889–2008, above-mean temperature periods occurred in AD 1889–1898, 1903–1908, 1922–1933, 1945–1950, 1955–1958, and 1994–2008, whereas below-mean temperature periods occurred in AD 1899–1902, 1909–1921, 1934–1944, 1951–1954, and 1961–1993. The reconstruction indicates that the early years of the twenty-first century represent the warmest period and that the period of 1910–1919 is the coldest decade over the last 120 years. The reconstructed temperature corresponds well with the observed temperature in Wuhan, Hubei Province, suggesting that the reconstruction can represent the local climatic signals and may also reflect the regional climatic signals.
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页码:1887 / 1894
页数:7
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共 160 条
[1]  
Brauning A(2006)Tree-ring evidence of ‘Little Ice Age’ glacier advances in southern Tibet Holocene 16 369-380
[2]  
Chen ZH(2000)The diagnosis and analysis of abrupt changes in the mean temperature during the 20th century in Wuhan and Yichang Resour Environ Yangtze Basin 9 56-62
[3]  
Chen F(2012)Reconstructed temperature for Yong’an, Fujian, Southeast China: linkages to the Pacific Ocean climate variability Global Planet Change 86–87 11-19
[4]  
Yuan YJ(2002)Evidence for a ‘Medieval Warm Period’ in a 1,100 year tree-ring reconstruction of past austral summer temperatures in New Zealand Geophys Res Lett 29 1667-558
[5]  
Wei WS(2003)Tree-ring reconstructions of temperature and sea-level pressure variability associated with the warm-season Arctic Oscillation since AD 1650 Geophys Res Lett 30 1549-3022
[6]  
Yu SL(2008)The unprecedented freezing disaster in January 2008 in Southern China and its possible association with the global warming Acta Meteorol Sin 22 538-2253
[7]  
Zhang TW(2010)Temperature variability since AD 1837 inferred from tree-ring maximum density of Abies Fafri on Gongga Mountain, China Chin Sci Bull 55 3015-197
[8]  
Cook ER(2002)Low-frequency signals in long tree-ring chronologies for reconstructing past temperature variability Science 295 2250-524
[9]  
Palmer JG(2012)Tree-ring based reconstruction of drought variability (1615–2009) in the Kongtong Mountain area, northern China Global Planet Change 80–81 190-55
[10]  
D’Arrigo RD(2005)Climatic response of thick leaf spruce ( J Arid Environ 61 513-143