Cumulative impact of dam constructions on streamflow and sediment regime in lower reaches of the Jinsha River, China

被引:0
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作者
Xiao-rong Huang
Lin-yun Gao
Peng-peng Yang
Yuan-yuan Xi
机构
[1] Sichuan University,State Key Laboratory of Hydraulics and Mountain River Engineering
[2] Sichuan University,College of Water Resource & Hydropower
来源
关键词
Cascade reservoirs; Cumulative effect; Hydrological regime; Sediment load; Jinsha River;
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中图分类号
学科分类号
摘要
The cumulative effect of cascade hydropower stations on river ecological environment has been widely concerned because of the significant streamflow hydrology change induced by dam constructions. The characteristics of the change in the lower reaches of the Jinsha River, China are analyzed based on long-term (1952–2015) hydrological and sedimentological data. The averaging coefficient, reservoir regulation coefficient (RRC), incoming sediment coefficient (ISC), and sediment transport modulus (STM), which reflect the variation of streamflow and sediment regimes, are defined and calculated. The results show that the construction and regulation of reservoirs reduces flow in flood season, increases flow in dry season, significantly altering the monthly discharge regimes. These alterations also led directly to changes in the timing of extreme flows at Pingshan Station. The monthly flow records at the basin outlet are reconstructed using stepwise regression, to reduce reservoir impacts. Comparisons of observed and reconstructed monthly flows demonstrate that the previous studies overestimated the cumulative effects of cascade reservoirs on flow processes. Furthermore, this study clearly illustrates that the reduction in sediment trapping and sediment transportation capacity together lead to the sharp reduction in annual sediment yield at the Pingshan Station. The earlier constructed reservoirs have more obvious effects on the ISC and STM than the more recent reservoirs and the effect of sediment trapping is related to reservoir location, on the main stream versus tributaries.
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页码:2752 / 2765
页数:13
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