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Sediment Transport and Its Impacts on Lake Kivu, Gihira Water Treatment Plant and Various Hydropower Plants along Sebeya River in Rwanda

机译:卢旺达塞贝亚河沿岸沉积物迁移及其对基伍湖,吉希拉水处理厂和各种水力发电厂的影响

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摘要

Complex processes of sediment transport in a river impact on overall aquatic system and result in the productivity decrease of socio-economic development projects taking the river as a source of water. The present study was designed to estimate Sebeya river sediment load and assess its impacts on Lake Kivu, Gihira water treatment plant and various hydropower plants constructed in Sebeya catchment located in Western Province of Rwanda. Water samples were hand-collected from five different sampling points along Sebeya river during rainy and dry seasons. Laboratory analysis for turbidity, total suspended solids, sieve analysis for bed load materials and NPK content of water samples were conducted. The results revealed that the average turbidity was found to be high during rainy season compared to dry season. The same trend was found in total suspended solids concentrations. At all 5 sampling sites and during rainy season compared to dry season, the average mass flowrates of bed load materials were 7.84 and 2.96 kg/hr respectively. Sieve analysis results showed that all bed load sediments were mainly composed of high proportions of fine sand of more than 70% which adversely causes damages on hydropower turbines and the effect of high soil erosion rates on Gihira water treatment plant was traduced by high turbidity of raw water and excessive costs of reagents. At Sebeya outlet, nutrients load and high turbidity reduce significantly the aesthetic quality of Lake Kivu, having a harmful impact on recreation and tourism, aquatic life and affect the livelihoods of people living in the vicinity. Researchers recommend two options of reducing the amount of sediment load in Sebeya river: either to prevent soil erosion or to trap eroded sediment at the upstream of the hydropower and the water treatment plants. Assessing the sediment load fluctuations in Sebeya river is useful for water managers and planners to adjust operations accordingly at water treatment and hydropower plants.
机译:河流对整体水生系统的沉积物运输的复杂过程,导致河流作为水源的社会经济发展项目生产力下降。本研究旨在估算Sebeya河沉积物负荷,并评估其对位于西北省卢旺达西部的Sebeya Condlammer Continment湖的Kivu,Gihira水处理厂和各种水电站的影响。在多雨和干燥的季节,从雪北河沿着Sebeya河的五个不同的抽样点手工采样。进行了浊度,总悬浮固体,筛选筛分材料分析和水样的NPK含量的实验室分析。结果表明,与干燥季节相比,雨季期间,发现平均浊度很高。在总悬浮固体浓度中发现了相同的趋势。在所有5个采样网站和雨季期间,与干燥季节相比,床载物的平均质量流量分别为7.84和2.96千克/小时。筛子分析结果表明,所有床荷载沉积物主要由高比例的细砂组成,超过70%,对水电涡轮机的损害产生了不利影响,并通过原始的高浊度造成了高原水处理厂的效果。试剂的水和过量成本。在Sebeya Outlet,营养负荷和高浊度明显减少了Kivu Lake Kivu的审美品质,对娱乐和旅游,水生生活产生有害影响,影响生活在附近的人们的生计。研究人员建议减少Sebeya River河中沉积物量的两种选择:要么防止土壤侵蚀或在水电和水处理厂的上游陷阱沉积物。评估Sebeya River中的沉积物负荷波动对于水管理人员和规划人员来说是有用的,以便在水处理和水电站调整操作。

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