首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Damming effect on the Changjiang (Yangtze River) river water cycle based on stable hydrogen and oxygen isotopic records
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Damming effect on the Changjiang (Yangtze River) river water cycle based on stable hydrogen and oxygen isotopic records

机译:基于稳定的氢氧同位素记录,对长江水循环的筑坝效果

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More than 50,000 dams have been built in the Changjiang (Yangtze River) catchment over the last half century, among which the Three Gorges Dam (TGD) is the largest hydroelectric engineering project in the world. The trapping effect of the TGD on the decline of Changjiang sediment flux has been widely documented, while the damming impact on river water cycle has not received enough attention because of the relative consistence of annual water discharge. In this regard, we present a new isotopic evidence to illustrate the damming effect on the Changjiang river water cycle based on stable hydrogen and oxygen isotopes. A historical comparison of seasonal distribution of stable oxygen isotope in the Changjiang river water indicates that the time lag of river water response to meteoric precipitation has changed from one month in the early 1980s to approximately two months in the past decade. The one-month slowdown of Changjiang river water cycle is probably the result of increasing trapping and water regulation effect by numerous dams in the catchment. This study provides the first quantitative evaluation of this significant damming impact on the Changjiang river water cycle, and the damming effects on ecosystem and biogeochemical process in river and marginal sea, as well as on socioeconomic development in China, have to be carefully considered in the future. (C) 2016 Elsevier B.V. All rights reserved.
机译:在过去的半个世纪中,长江流域已修建了50,000多座水坝,其中三峡大坝(TGD)是世界上最大的水力发电工程。 TGD对长江沉积物通量下降的诱集作用已有广泛文献记载,但由于年排水量的相对一致性,对河水循环的筑坝影响尚未引起足够的重视。在这方面,我们提出了新的同位素证据,以说明基于稳定的氢和氧同位素对长江水循环的筑坝作用。长江水中稳定氧同位素的季节性分布的历史比较表明,河流水对大气降水响应的时滞已从1980年代初的一个月变为过去十年的大约两个月。长江水循环一个月的放缓可能是由于流域内众多水坝增加了诱集和水调节作用的结果。这项研究首次定量评估了大坝对长江水循环的重大影响,大坝对河流和边际海域的生态系统和生物地球化学过程以及对中国社会经济发展的影响必须在研究中认真考虑。未来。 (C)2016 Elsevier B.V.保留所有权利。

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