K-water Institute, Korea Water Resources Corporation, Daejeon, Republic of Korea.
Water Sci Technol. 2010;62(12):2811-8. doi: 10.2166/wst.2010.425.
Artificial changes of rivers, including construction and operation of dams, inevitably lead to physical and ecological changes throughout waterways and their floodplains. In this study, a conceptual model coupled with integrated numerical modeling is presented for hydraulic fish habitat assessment of the Geum River basin, Republic of Korea. Based on the major events which might have affected the ecological system, a conceptual model was formulated to guide desktop and field studies, modeling and scenario evaluations. The result of hydraulic fish habitat assessment indicated that the construction of the Daecheong Multipurpose Dam (DMD) in the Geum River basin has altered flow magnitudes and reduced the river's flow variability. Changes are evident in the magnitude of medium and small flows and the river experiences increased low flows during the dry season. Black shiner, an endangered fish species in Korea, was selected and analyzed to explore relationships between flow regime change by dams and changes to its preferred habitats. As a result, fewer sensitive riffle-benthic species were observed in the reaches downstream of DMD due to the reduction of suitable habitat conditions such as riffle-pool sequences. The proposed conceptual model and integrated toolkit would allow river managers to isolate the physical and biological effects associated with dam operation and could be useful for developing river management strategies.
人工改变河流,包括水坝的建设和运行,不可避免地导致整个水道及其洪泛区的物理和生态变化。在这项研究中,提出了一个概念模型,并结合综合数值模型,对韩国的 Geum 河流域进行水力鱼类栖息地评估。基于可能影响生态系统的主要事件,制定了一个概念模型,以指导桌面和现场研究、建模和情景评估。水力鱼类栖息地评估的结果表明,在 Geum 河流域建设 Daecheong 多用途水坝 (DMD) 改变了水流规模,并减少了河流的流量变化。中低水流的流量明显变化,河流在旱季经历了更多的低流量。韩国濒危鱼类黑鲷被选中进行分析,以探讨大坝引起的水流模式变化与其首选栖息地变化之间的关系。结果,由于适宜栖息地条件(如急流-底栖区序列)的减少,在 DMD 下游的河段观察到的敏感急流-底栖物种较少。所提出的概念模型和综合工具包将允许河流管理者隔离与大坝运行相关的物理和生物影响,并有助于制定河流管理策略。