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Effects of a Low-Head Dam Removal on River Morphology and Riparian Vegetation: A Case Study of Gongreung River

机译:低水头除水对河流形态和河岸植被的影响-以共荣河为例

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The long term existence of a low-head dam in the river channel significantly affects river geomorphology and river ecosystem. Because more and more low-head dam structures have deteriorated in recent years, the attention for low-head dam removal is increasing as one of alternatives for river restoration. Thus, this study intends to investigate the impacts of low-head dam removal on river geomorphology and riparian vegetation with developing a quantitative method to predict the changes of river morphology as well as invasion, growth, expansion and destruction of riparian vegetation after a low-head dam removal. To verify the numerical simulation model, the low-head dam removal case in Gongreung River was employed with investigation of low-head dam removal responses on river geomorphology and riparian vegetation. Following the low-head dam removal, the results of monitoring and numerical simulation indicated that new sand bars has formed as well as increasing the extent of existing sand bars in the upstream of the low-head dam. The sand bars have been colonized in a year after the low-head dam removal by grass type plants. After a decade to several decades, the riparian vegetation in sand bars often developed to tree type plants in several low-head dam removal cases. As other cases, Gongreung River also showed the growth of tree type plants in 5 years after the removal.
机译:河道中低水位大坝的长期存在极大地影响了河流的地貌和河流生态系统。由于近年来越来越多的低水位大坝结构恶化,因此,低水位大坝拆除作为河流恢复的替代方案之一的关注日益增加。因此,本研究旨在通过开发定量方法来预测低水头水坝拆除对河流地貌和河岸植被的影响,以及预测低潮后河岸植被的入侵,生长,扩展和破坏的定量方法。拆除大坝。为了验证数值模拟模型的有效性,以共荣河低头大坝拆除案例为例,对河流地貌和河岸植被对低头大坝拆除的响应进行了研究。拆除低水位大坝之后,监测和数值模拟结果表明,新的沙洲已经形成,并且增加了低水位大坝上游现有沙洲的范围。在草型植物清除低水位大坝之后的一年内,沙洲已被殖民。十年到几十年后,在数个低水位大坝拆除案例中,沙洲中的河岸植被通常发展为树型植物。与其他情况一样,拱陵河在清除后的5年中也显示出树型植物的生长。

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