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首页> 外文期刊>Journal of Hydrodynamics >RECONSTRUCTION OF PRECIPITATION SERIES AND ANALYSIS OF CLIMATE CHANGE OVER PAST 500 YEARS IN NORTHERN CHINA
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RECONSTRUCTION OF PRECIPITATION SERIES AND ANALYSIS OF CLIMATE CHANGE OVER PAST 500 YEARS IN NORTHERN CHINA

机译:中国北方近500年降水序列的重建与气候变化分析

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摘要

It is important and necessary to get a much longer precipitation series in order to research features of drought/flood and climate change. Based on dryness and wetness grades series of 18 stations in Northern China of 533 years from 1470 to 2002, the Moving Cumulative Frequency Method (MCFM) was developed, moving average precipitation series from 1499 to 2002 were reconstructed by testing three kinds of average precipitation, and the features of climate change and dry and wet periods were researched by using reconstructed precipitation series in the present paper. The results showed that there were good relationship between the reconstructed precipitation series and the observation precipitation series since 1954 and their relative root-mean-square error were below 1.89% , that the relation between reconstructed series and the dryness and wetness grades series were nonlinear and this nonlinear relation implied that reconstructed series were reliable and could became foundation data for researching evolution of the drought and flood. Analysis of climate change upon reconstructed precipitation series revealed that although drought intensity of recent dry period from middle 1970s of 20th century until early 21st century was not the strongest in historical climate of Northern China, intensity and duration of wet period was a great deal decreasing and shortening respectively, climate evolve to aridification situation in Northern China.
机译:为了研究干旱/洪水和气候变化的特征,获得更长的降水序列是重要且必要的。根据1470年至2002年华北地区533年的18个台站的干湿等级序列,开发了移动累积频率法(MCFM),通过测试三种平均降水量重建了1499年至2002年的移动平均降水量序列,利用重建的降水序列研究了气候变化特征以及干湿时期。结果表明,重建降水序列与观测降水序列自1954年以来有良好的关系,其相对均方根误差在1.89%以下,重建序列与干湿等级关系呈非线性关系。这种非线性关系表明重建序列是可靠的,可以作为研究旱涝演变的基础数据。根据重建的降水序列对气候变化的分析表明,尽管从20世纪1970年代中期到21世纪初的最近干旱时期的干旱强度不是中国北方历史气候中最强的时期,但湿润时期的强度和持续时间却大大减少,并且北方气候变短,气候向干旱化发展。

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