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柴达木盆地气温降水的长序列变化及与水资源关系
引用本文:傅小城,王芳,王浩,段水强.柴达木盆地气温降水的长序列变化及与水资源关系[J].资源科学,2011,33(3):408-415.
作者姓名:傅小城  王芳  王浩  段水强
作者单位:1. 中国水利水电科学研究院水资源所,北京,100038
2. 青海省水文水资源勘测局,西宁,810001
基金项目:国家发改委循环经济示范项目:“柴达木盆地生态需水与可利用水资源量研究”(编号:ZK080104)。
摘    要:根据柴达木盆地8个气象观测站点1960年-2009年共50年的逐月平均气温及降水量资料,综合运用线性趋势分析及Mann-Kendall趋势检验等气象统计分析方法对柴达木盆地气温及降水的变化趋势进行了分析。结果表明在过去的50年里,柴达木盆地经历了明显的升温过程,且增温幅度越来越大,特别是进入20世纪90年代,总的升温幅度在0.5℃/10a左右,远大于同期全球的升温幅度;柴达木盆地降水也略有上升,变化幅度6.2mm/10a左右。从空间分布上看,柴达木盆地气温增幅从东到西逐渐增高,而降水倾向率则逐渐减小。季节分布上,盆地内冬季的气温升温幅度最为明显,增温幅度达0.72℃/10a左右,降水倾向率则夏季最大,达3.4mm/10a。累积距平曲线及Mann-Kendall趋势突变检验综合分析表明,柴达木盆地气温在20世纪80年代有一个明显的增温过程,增温起点在1987年左右。气温、降水的变化也在一定程度上影响到水资源量的变化,相关分析表明,地表水资源量与降水呈显著相关关系,但与气温关系不明显。另外,上一年降水也对地表水资源量有一定的影响。

关 键 词:气温  降水  水资源  趋势分析  柴达木盆地

Analysis of Long-Term Changes in Temperature and Precipitation and Their Relationships with Water Resources in the Qaidam Basin in China
FU Xiaocheng,WANG Fang,WANG Hao and DUAN Shuiqiang.Analysis of Long-Term Changes in Temperature and Precipitation and Their Relationships with Water Resources in the Qaidam Basin in China[J].Resources Science,2011,33(3):408-415.
Authors:FU Xiaocheng  WANG Fang  WANG Hao and DUAN Shuiqiang
Institution:China Institute of Water Resources and Hydropower Research, Beijing 100038, China;China Institute of Water Resources and Hydropower Research, Beijing 100038, China;China Institute of Water Resources and Hydropower Research, Beijing 100038, China;Hydrology and Water Resource Bureau of Qinghai Province, Xining 810001, China
Abstract:Global climate change induced by increasing emissions of greenhouse gasses is expected to have a considerable impact on the global hydrologic cycle. Along with global warming, temperature and rainfall varied across China, especially in northwestern China. The Qaidam basin, an important part of northwestern China, is very sensitive to climate change. In this paper, trends in temperature and rainfall in the Qaidam basin were derived by the linear trend analysis and Mann-Kendall trend test based on monthly met...
Keywords:Temperature  precipitation  water resources  trend analysis  Qaidam basin
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