4.4 Article

Dendroclimatic reconstruction of autumn-winter mean minimum temperature in the eastern Tibetan Plateau since 1600 AD

期刊

DENDROCHRONOLOGIA
卷 33, 期 -, 页码 1-7

出版社

ELSEVIER GMBH
DOI: 10.1016/j.dendro.2014.09.001

关键词

Tibetan Plateau; Qamdo region; Tree-ring; Mean minimum temperature

资金

  1. National Natural Science Foundation of China (NSFC) [41205124, 41405139]
  2. Meteorology Public Welfare Industry Research [GYHY201206014, GYHY201106013]

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We developed three tree-ring width chronologies of Dragon Spruce (Picea likiangensis var. balfouriana) from Qamdo region in the eastern Tibetan Plateau. It was found that the autumn-winter mean minimum temperature was the principal factor that limited the radial growth of Dragon Spruce. In particular, the tree-ring width chronology of the Changdu site was related significantly and positively with the autumn-winter mean minimum temperature. Using standard dendrochronological (STD) method, we obtained a 400-year reconstruction of October-January minimum temperature at the Qamdo meteorological station. The reconstruction explains 43.1% of the variance in the instrumental temperature records during the 1954-2006 calibration periods. It indicates that quasi-periodic changes exist on scales of 5, 11, and 102-103a. The temperature fluctuates around the mean and rises slowly from 1594 to the 1700s, following which the autumn-winter mean minimum temperature exhibited obvious stage changes with warmer periods (1769-1800, 1819-1849, 1873-1900, 1926-1954, 1987-2006) and colder periods (1716-1768, 1801-1818, 1850-1872, 1901-1925, 1955-1986). The temperature in the eastern Tibetan Plateau and the mean temperature in the Northern Hemisphere exhibited good consistency in the 20th century. From 1900 to the 1930s, the temperature rose slowly and then declined sharply in the 1940s. In the 1950s, the temperature rose, before falling again in the early 1960s, prior to a gradual increase following the late 1960s. The temperature in Qamdo represents the temperature of the southeastern Tibetan Plateau, and significant positive correlations were found with other temperature reconstructions on the southeastern Tibetan Plateau and the southern slopes of the Himalaya (including the Indian peninsula). The India-Burma Trough may have a certain effect on climate change in the eastern Tibetan Plateau. The reconstruction sheds new light on temperature variability and change in a region where the climate history for the past several centuries is poorly understood. (C) 2012 Elsevier GmbH. All rights reserved.

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