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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Advanced investigation on the change in the streamflow into the water source of the middle route of China's water diversion project
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Advanced investigation on the change in the streamflow into the water source of the middle route of China's water diversion project

机译:先进的调查的变化河流的水源中国的引水工程

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摘要

To alleviate water shortage in northern China, the middle route of the South to North Water Diversion Project (MRP) was constructed by the Chinese government. A dramatic reduction in the annual streamflow into Danjiangkou Reservoir (ASDR), the water source of MRP, during 1990 has raised some concerns on the MRP's operation. This paper employed an advanced segmented regression model with more recent data to have a clear picture and understand the changing pattern of the ASDR. Our study first revealed a zigzag changing pattern (decreasing-increasing-decreasing-increasing) of ASDR during 1960-2013, which was supported by statistical criteria compared with a monotonic or single abrupt change. Particularly, the significantly decreasing trend from 1990s was reversed after 2000, and such change may relieve the concern about the water availability in the future. Sensitivity analysis showed that changes in streamflow were largely influenced by the combined effects of precipitation (P) and potential evapotranspiration (ET_0) and were more sensitive to P than ET_0. As ET_0 is estimated from other primary variables, further analysis was conducted to understand the sensitivities of ET_0 to its primary driving variables (wind speed, actual vapor pressure, temperature, and sunshine duration) and indicated that ET0 is mostly sensitive to actual vapor pressure during 1960-2013. The findings will assist the MRP's operation and management. Moreover, the results in this study also indicate that an adaptive water diversion plan, rather than the current plan with a constant annual amount of diversion water, might be a better option in the MRP's operation.
机译:缓解中国北方水资源短缺,中线的南到北水工程(MRP)建造的中国政府。年度水流到丹江口水库(正如),MRP的水源,在1990年引起了一些担忧MRP的操作。论文采用一种先进的分段回归有一个明确的模型与最近的数据图片和理解不断变化的模式正如。改变模式(decreasing-increasing-decreasing-increasing)正如在1960 - 2013年期间,这是支持的相比之下,单调或统计标准单一的突变。从1990年代显著减少趋势推翻了2000年之后,这样的变化可能会减轻担心水的可用性的未来。在流速及流水量很大程度上的影响降水(P)和组合的影响潜在蒸散(ET_0)和更敏感比ET_0 P。从其他主要变量,进一步分析进行理解的敏感ET_0其主要驱动变量(风实际速度、蒸汽压、温度和日照时间),表明ET0主要敏感期间实际蒸汽压1960 - 2013。操作和管理。研究还表明,一种自适应引水计划,而不是目前的计划每年不断转移水,MRP的可能是一个更好的选择操作。

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