Effects of dam construction on total solids in the Ca River, north-central Vietnam

被引:0
作者
Ho Thi Phuong
Kenji Okubo
机构
[1] Vinh University,School of Chemical, Biological and Environmental Technologies
[2] Okayama University,Graduate School of Environmental and Life Science
来源
Environmental Earth Sciences | 2019年 / 78卷
关键词
Total solids; Suspended solids; Dissolved solids; Regime laws; Sediment transport; Ca River;
D O I
暂无
中图分类号
学科分类号
摘要
The river regime laws of the hydraulic properties of the cross sections of two hydrological stations (Dua and Yen Thuong) along the Ca River in north-central Vietnam were combined into power functions with exponents of 1.46–1.85 using the Manning roughness coefficient and the settling velocity or the particle size to simulate the suspended sediment load. The Nash–Sutcliffe efficiency, percent bias, and the ratio of the root-mean-square error to the standard deviation of the measured data were used to evaluate the calibration process for the pre-dam period (1994–2004) and for validation for the post-dam period (2005–2014). Effects of dam construction include a change in the relationship between the Manning roughness coefficient and sediment particle size. The observed sediment load decreased by approximately 20–40% after dam construction at both stations. We used a power function with exponents of 0.968 and 0.992 for the dissolved solid load to calculate the long-term annual total dissolved solids at the Dua and Yen Thuong stations, respectively. After dam construction, the average value of the total suspended solids–total dissolved solids ratio decreased from 3.0 to 2.3 at the Dua station and from 4.1 to 2.2 at the Yen Thuong station.
引用
收藏
相关论文
共 45 条
[1]  
Andrews ED(1986)Downstream effects of Flaming Gorge Reservoir on the Green River, Colorado and Utah Geol Soc Am Bull 97 1012-1023
[2]  
Camenen B(2008)A general formula for noncohesive suspended sediment transport J Coast Res 24 615-627
[3]  
Larson M(1991)Suspended sediment-transport capacity for open channel flow J Hydraul Eng 117 191-204
[4]  
Celik I(1985)Changes in river regime after the construction of upstream reservoirs Earth Surf Process Landf 10 143-159
[5]  
Rodi W(2017)The impact of damming on riverine fluxes to the ocean: a case study from Eastern Iceland Water Res 113 124-138
[6]  
Chien N(1986)Hydraulics and hydraulic geometry Prog Phys Geogr 10 1-31
[7]  
Eiriksdottir ES(2002)Disrupting biogeochemical cycles–consequences of damming Aquat Sci 64 55-65
[8]  
Oelkers EH(2017)Spatial and temporal responses of soil erosion to climate change impacts in a transnational watershed in Southeast Asia Climate 5 22-388
[9]  
Hardardottir J(1997)Effect of Danube River dam on Black Sea biogeochemistry and ecosystem structure Nature 386 385-1343
[10]  
Gislason SR(1980)Open channel flow with suspended sediments J Hydraul Div 106 1325-3871