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Balancing river restoration measures around a river bifurcation: A case study from the Netherlands

机译:平衡分岔河道附近的河流恢复措施:以荷兰为例

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The Rhine River in the Netherlands still has some characteristics of a delta, although the river is extremely engineered and confined between dikes. An important characteristic are the bifurcation points where the river bifurcates into different branches. The discharge partitioning at the bifurcates is predefined, as this is an important element for the protection of the downstream branches. Adjustable control structures in the vicinity of the bifurcation point facilitate this setting. In order to mitigate higher discharges due to climate change, measures in the floodplains to reduce flood levels are projected. In the planning process, it is important to maintain the discharge partitioning and to guarantee a setting of the control structure such that some control space is left. This can be done by balancing measures. A measure which lowers the flood levels on one branch, should be balanced by another measure on the other branch in order to maintain the correct settings. This requires a careful planning process and careful considerations between flood level lowering and settings of the control structures.
机译:尽管莱茵河经过精心设计和限制在堤防之间,但荷兰的莱茵河仍具有三角洲的某些特征。一个重要的特征是河流分叉成不同分支的分叉点。分叉处的排放分区是预先定义的,因为这是保护下游分支的重要元素。分叉点附近的可调控制结构使此设置变得容易。为了减轻由于气候变化造成的高排放量,预计将在洪泛区采取措施降低洪水位。在计划过程中,重要的是要保持排放分区并确保控制结构的设置,以便保留一些控制空间。这可以通过平衡措施来完成。降低一个分支的洪水位的措施应与另一分支的另一措施相平衡,以保持正确的设置。这就需要仔细的计划过程和降低洪水位与控制结构设置之间的仔细考虑。

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