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Spatiotemporal trends of reference evapotranspiration and its driving factors in the Beijing-Tianjin Sand Source Control Project Region, China

机译:京津沙源区控制区参考蒸散量的时空变化趋势及其驱动因素

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摘要

In the water-limited Beijing-Tianjin Sand Source Control Project Region, reference evapotranspiration (ETO) is a vital hydrological factor for the revegetation implementation, and its long-term variation is of much interest in climate change studies. In our study, temporal and spatial patterns in ET and related driving factors in the project region are evaluated for the period 1959-2011, based on daily data from 46 meteorological stations, using Mann-Kendall CM-K) test, Sen's slope estimator, and multivariate regression. The results indicated that annual ETO had an insignificant decreasing trend in the study area, in which 15 stations showed significant negative trends and only 1 station showed significant positive trend at the 95% confidence level. Significant downward ETO was detected in the north sub-region (I) in spring, in the west sub-region (II) in summer and autumn. Analysis of the impacts of meteorological variables on spatiotemporal trends of ETO showed that wind speed was the most dominant factor affecting ETO variation at 35 stations. Downward ETO induced by decreased wind speed may be result from revegetation of Beijing-Tianjin Sand Source Control Project. In addition, ET change was influenced by sunshine duration in summer and maximum air temperature in winter. Better understanding ET response to climate change will enable efficient use of water resources and vegetation management, which could improve the ecological and environmental quality in Beijing, Tianjin, and the surrounding areas. (C) 2014 Elsevier B.V. All rights reserved.
机译:在水资源有限的京津沙源控制项目区,参考蒸散量(ETO)是植被恢复实施的重要水文因素,其长期变化在气候变化研究中引起了极大的兴趣。在我们的研究中,根据来自46个气象站的每日数据,使用Mann-Kendall CM-K)测试,Sen的斜率估算器,和多元回归。结果表明,在95%的置信水平下,研究区域的年度ETO下降趋势不明显,其中15个站点显示出明显的负趋势,只有1个站点显示出明显的正趋势。在春季的北部分区(I),夏季的秋季和西部的西部分区(II)发现了显着的ETO下降。气象变量对ETO时空趋势的影响分析表明,风速是影响35个台站ETO变化的最主要因素。风速下降引起的ETO下降可能是由于京津沙源治理工程的植被恢复所致。另外,ET的变化还受夏季日照时间和冬季最高气温的影响。更好地理解ET对气候变化的反应将使水资源和植被管理得到有效利用,这可以改善北京,天津及周边地区的生态和环境质量。 (C)2014 Elsevier B.V.保留所有权利。

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