A 2,326-year tree-ring record of climate variability on the northeastern Qinghai-Tibetan Plateau

High‐resolution climate proxy records covering the last two millennia on the Qinghai‐Tibetan Plateau are scarce yet essential to evaluation of the patterns, synchroneity and spatial extent of past climatic changes including those in the Medieval Warm Period (MWP) and the Little Ice Age (LIA). Here w...

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Published inGeophysical research letters Vol. 30; no. 14; pp. HLS2.1 - n/a
Main Authors Zhang, Qi-Bin, Cheng, Guodong, Yao, Tandong, Kang, Xingcheng, Huang, Jianguo
Format Journal Article
LanguageEnglish
Published Washington, DC Blackwell Publishing Ltd 01.07.2003
American Geophysical Union
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Abstract High‐resolution climate proxy records covering the last two millennia on the Qinghai‐Tibetan Plateau are scarce yet essential to evaluation of the patterns, synchroneity and spatial extent of past climatic changes including those in the Medieval Warm Period (MWP) and the Little Ice Age (LIA). Here we present a 2326‐year tree‐ring chronology of Sabina przewalskii Kom. for Dulan area of northeastern Qinghai‐Tibetan Plateau. We find that the annual growth rings mainly reflect variations in regional spring precipitation. The greatest change in spring precipitation during the last two millennia seems to occur in the second half of the 4th century. The North Atlantic MWP was accompanied by notable wet springs in the study region during A.D. 929–1031 with the peak occurring around A.D. 974. Three intervals of dry springs occurred in the period of LIA. Our tree‐ring data will facilitate intercontinental comparisons of large‐scale synoptic climate variability for the last two millennia.
AbstractList High-resolution climate proxy records covering the last two millennia on the Qinghai-Tibetan Plateau are scarce yet essential to evaluation of the patterns, synchroneity and spatial extent of past climatic changes including those in the Medieval Warm Period (MWP) and the Little Ice Age (LIA). Here we present a 2326- year tree-ring chronology of Sabina przewalskii Kom. for Dulan area of northeastern Qinghai-Tibetan Plateau. We find that the annual growth rings mainly reflect variations in regional spring precipitation. The greatest change in spring precipitation during the last two millennia seems to occur in the second half of the 4th century. The North Atlantic MWP was accompanied by notable wet springs in the study region during A.D. 929-1031 with the peak occurring around A.D. 974. Three intervals of dry springs occurred in the period of LIA. Our tree-ring data will facilitate intercontinental comparisons of large-scale synoptic climate variability for the last two millennia.
High‐resolution climate proxy records covering the last two millennia on the Qinghai‐Tibetan Plateau are scarce yet essential to evaluation of the patterns, synchroneity and spatial extent of past climatic changes including those in the Medieval Warm Period (MWP) and the Little Ice Age (LIA). Here we present a 2326‐year tree‐ring chronology of Sabina przewalskii Kom. for Dulan area of northeastern Qinghai‐Tibetan Plateau. We find that the annual growth rings mainly reflect variations in regional spring precipitation. The greatest change in spring precipitation during the last two millennia seems to occur in the second half of the 4th century. The North Atlantic MWP was accompanied by notable wet springs in the study region during A.D. 929–1031 with the peak occurring around A.D. 974. Three intervals of dry springs occurred in the period of LIA. Our tree‐ring data will facilitate intercontinental comparisons of large‐scale synoptic climate variability for the last two millennia.
Author Zhang, Qi-Bin
Yao, Tandong
Cheng, Guodong
Huang, Jianguo
Kang, Xingcheng
Author_xml – sequence: 1
  givenname: Qi-Bin
  surname: Zhang
  fullname: Zhang, Qi-Bin
  email: qbzhang@ns.lzb.ac.cn
  organization: Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu, People's Republic of China
– sequence: 2
  givenname: Guodong
  surname: Cheng
  fullname: Cheng, Guodong
  organization: Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu, People's Republic of China
– sequence: 3
  givenname: Tandong
  surname: Yao
  fullname: Yao, Tandong
  organization: Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu, People's Republic of China
– sequence: 4
  givenname: Xingcheng
  surname: Kang
  fullname: Kang, Xingcheng
  organization: Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu, People's Republic of China
– sequence: 5
  givenname: Jianguo
  surname: Huang
  fullname: Huang, Jianguo
  organization: Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu, People's Republic of China
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Wed Jan 22 16:54:02 EST 2025
Wed Oct 30 09:53:07 EDT 2024
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Issue 14
Keywords Neoglacial
Mesozoic
upper Holocene
Quaternary
springs
Atlantic Ocean
chronology
climate
Lias
upper Quaternary
Lower Jurassic
Jurassic
precipitation
Tree ring
climate modification
Synoptic scale
plateaus
Spring(season)
growth
Cenozoic
Phanerozoic
Holocene
tree rings
high resolution
Language English
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PublicationTitle Geophysical research letters
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American Geophysical Union
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References Fritts, H. C., T. J. Blasing, B. P. Hayden, and J. E. Kutzbach, Multivariate techniques for specifying tree-growth and climate relationships ad for reconstructing anomalies in paleoclimate, J. Appl. Meteorol., 10, 845-864, 1971.
Blasing, T. J., A. M. Solomon, and D. N. Duvick, Response function revisited, Tree-Ring Bull., 44, 1-15, 1984.
Cook, E. R., K. R. Briffa, D. M. Meko, D. A. Graybill, and G. Funkhouser, The 'segment length curse' in long tree-ring chronology development for palaeoclimatic studies, Holocene, 5, 229-237, 1995.
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Briffa, K. R., Annual climate variability in the Holocene: Interpreting the message of ancient trees, Quat. Sci. Rev., 19, 87-105, 2000.
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Chen, J. Q., and Y. F. Shi, Comparison of the winter temperature in the Yangtze Delta in the last 1000a with the record in Guliya ice core, J. Glaciol. Geocryol., 24, 32-39, 2002.
Briffa, K. R., and T. J. Osborn, Seeing the wood from the trees, Science, 284, 926-927, 1999.
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References_xml – reference: Chen, J. Q., and Y. F. Shi, Comparison of the winter temperature in the Yangtze Delta in the last 1000a with the record in Guliya ice core, J. Glaciol. Geocryol., 24, 32-39, 2002.
– reference: Yang, B., Preliminary study on the temporal and spatial distribution of climatic variations in a decadal resolution since the Little Ice Age, Arid Land Geogr., 24, 67-73, 2001 (in Chinese).
– reference: Yao, T. D., D. H. Qin, L. D. Tian, K. Q. Jiao, Z. H. Yang, and C. Xie, Variations in temperature and precipitation in the past 2000a on the Xizang (Tibet) Plateau: Guliya ice core record, Sci. China (D), 39, 426-433, 1996.
– reference: Tang, M. C., Z. B. Shen, and Y. Y. Chen, On climatic characteristics of the Xizang plateau monsoon, Acta. Geogr. Sinica, 34, 33-42, 1979 (in Chinese).
– reference: Mann, M. E., R. S. Bradley, and M. K. Hughes, Global-scale temperature patterns and climate forcing over the past six centuries, Nature, 392, 779-787, 1998.
– reference: Esper, J., E. R. Cook, and F. H. Schweingruber, Low-frequency signals in long tree-ring chronologies for reconstructing past temperature variability, Science, 295, 2250-2253, 2002.
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Snippet High‐resolution climate proxy records covering the last two millennia on the Qinghai‐Tibetan Plateau are scarce yet essential to evaluation of the patterns,...
High-resolution climate proxy records covering the last two millennia on the Qinghai-Tibetan Plateau are scarce yet essential to evaluation of the patterns,...
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SubjectTerms Earth, ocean, space
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Title A 2,326-year tree-ring record of climate variability on the northeastern Qinghai-Tibetan Plateau
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