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国家自然科学基金(40871091)

作品数:3 被引量:63H指数:3
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发文基金:国家自然科学基金国家重点基础研究发展计划中国科学院战略性先导科技专项更多>>
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Establishment of tree-ring chronology and climatic response of Tibetan juniper(S.tibetica) in south Tibet,western China被引量:3
2010年
A tree-ring width chronology of 442 years(1567-2008) was developed from Tibetan junipers(S.tibetica) derived from south Tibet in western China.Three versions of chronology were produced according to standard dendrochronological techniques.The correlation and response analysis displays a high correlation between the standard tree ring-width chronology and observed annual mean precipitation series during the period 1961-2008.Based on a linear regression model,an annual(prior August to current July) precipitation for the past 229 years was reconstructed.This is the first well-calibrated precipitation reconstruction for the Nanggarze region,south Tibet.The results show that relatively wet years with above-average precipitation occurred in 1780-1807,1854-1866,1886-1898,1904-1949,1967-1981 and 2000-2008,whereas relatively dry years with below-average precipitation prevailed during 1808-1853,1867-1885,1899-1903,1950-1966 and 1982-1999.Common dry/wet periods during 1890s,1910s,1940s-1960s and 1980s were also identified from other moisture reconstructions of nearby regions,indicating a synchronous climatic variation in south Tibet.Abrupt change beginning in 1888 was detected,revealing a transition from wet to dry conditions in south Tibet.Power spectrum analysis reveals significant cycles of 28-year,5.5-5.6-year and 3.3-year during the past 200 years.
Dmitry M.Sonechkin
关键词:JUNIPER
树轮记录的小冰期以来青藏高原气候变化的时空特征被引量:45
2012年
小冰期气候为评估现代气候变化提供了最直接的背景。本文主要依据树轮资料,同时结合现代仪器观测记录,利用经验正交函数(EOF)方法探讨了青藏高原小冰期以来气候变化的时空特征。首先分析了高原的温度变化。近50年来青藏高原的温度变化基本同相位变化,没有明显的区域差异;乌兰树轮序列是青藏高原的冬半年(9~4月)温度代用指标;利用6条指示夏季或暖季温度变化的树轮序列合并形成的新序列可指示高原春季-夏季(3~8月)温度变化;依据RCS(区域曲线标准化)方法建立的昌都树轮序列,能够反映整个青藏高原的年平均温度变化;不同季节的温度重建序列均显示17世纪和18世纪20~70年代是高原小冰期气候寒冷的时期,而18世纪初,19世纪后半叶,20世纪中期的气候较温暖,且均显示20世纪末期气候的快速增暖事实。其次,从重建的亚洲区域夏季PDSI(Palmer Drought Severity Index)网格化数据集中提取42个网格点数据,分析了过去700年(1300~2005A.D.)高原的湿度变化。发现前3个特征向量代表了高原过去湿度变化的主要空间模态,与利用器测降水记录展开的EOF模态基本一致,表明主导高原干湿变化时空差异的物理过程是稳定的,不随时间而变化;近700年来高原南北部湿度变化具有明显的区域差异,最显著的差别是:自20世纪中期以来高原北部存在明显的变湿趋势,而高原南部却恰恰相反,呈现逐渐变干的趋势;近700年来高原南部的干湿变化有超前于高原北部的趋势。
杨保
关键词:小冰期青藏高原温度变化
Preliminary multiproxy surface air temperature field reconstruction for China over the past millennium被引量:19
2012年
We present the first millennial-length gridded field reconstruction of annual temperature for China, and analyze the reconstruction for spatiotemporal changes and associated uncertainties, based on a network of 415 well-distributed and accurately dated climatic proxy series.The new reconstruction method is a modified form of the point-by-point regression (PPR) approach.The main difference is the incorporation of the "composite plus scale" (CPS) and "Regularized errors-in-variables" (EIV) algorithms to allow for the assimilation of various types of the proxy data.Furthermore, the search radius is restricted to a grid size; this restriction helps effectively exclude proxy data possibly correlated with temperature but belonging to a different climate region.The results indicate that: 1) the past temperature record in China is spatially heterogenic, with variable correlations between cells in time; 2) the late 20th century warming in China probably exceeds mean temperature levels at any period of the past 1000 years, but the temperature anomalies of some grids in eastern China during the Medieval climate anomaly period are warmer than during the modern warming; 3) the climatic variability in the eastern and western regions of China was not synchronous during much of the last millennium, probably due to the influence of the Tibetan Plateau.Our temperature reconstruction may serve as a reference to test simulation results over the past millennium, and help to finely analyze the spatial characteristics and the driving mechanism of the past temperature variability.However, the lower reconstruction skill scores for some grid points underline that the present set of available proxy data series is not yet sufficient to accurately reconstruct the heterogeneous climate of China in all regions, and that there is the need for more highly resolved temperature proxies, particularly in the Tibetan Plateau.
SHI FengYANG BaoLucien Von GUNTEN
关键词:PALEOCLIMATOLOGY
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