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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Upstream perturbation and floodplain formation effects on chute-cutoff-dominated meandering river pattern and dynamics
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Upstream perturbation and floodplain formation effects on chute-cutoff-dominated meandering river pattern and dynamics

机译:上游扰动和洪泛平坦形成效果对寒叶截止的蜿蜒河流模式和动力学

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A sustained dynamic inflow perturbation and bar-floodplain conversion are considered crucial to dynamic meandering. Past experiments, one-dimensional modelling and linear theory have demonstrated that the initiation and persistence of dynamic meandering require a periodic transverse motion of the inflow. However, it remains unknown whether the period of the inflow perturbation affects self-formed meander dynamics. Here, we numerically study the effect of the inflow perturbation period on the development and meander dynamics of a chute-cutoff-dominated river, which requires two-dimensional modelling with vegetation forming floodplain on bars. We extended the morphodynamic model Nays2D with growth and mortality rules of vegetation to allow for meandering. We tested the effect of a transversely migrating inflow boundary by varying the perturbation period between runs over an order of magnitude around typical modelled meander periods. Following the cutoff cascade after initial meander formation from a straight channel, all runs with sufficient vegetation show series of growing meanders terminated by chute cutoffs. This generates an intricate channel belt topography with point bar complexes truncated by chutes, oxbow lakes, and scroll-bar-related vegetation age patterns. The sinuosity, braiding index and meander period, which emerge from the inherent biomorphological feedback loops, are unrelated to the inflow perturbation period, although the spin-up to dynamic equilibrium takes a longer time and distance for weak and absent inflow perturbations. This explains why, in previous experimental studies, dynamic meandering was only accomplished with a sustained upstream perturbation in flumes that were short relative to the meander wavelength. Our modelling of self-formed meander patterns is evidence that scroll-bar-dominated and chute-cutoff-dominated meanders develop from downstream convecting instabilities. This insight extends to many more fluvial, estuarine and coastal s
机译:持续的动态流入扰动和酒吧 - 泛洪平转化被认为是动态蜿蜒的至关重要。过去的实验,一维建模和线性理论表明,动态蜿蜒的启动和持续存在需要流入的周期性横向运动。然而,它仍然未知流入扰动的时期是否会影响自成的曲折动态。在这里,我们在数值上研究了流入扰动期对寒乳截止束缚河流的开发和蜿蜒动态的影响,这需要与植被形成植被的二维建模。我们将Morphoyminy Model Nays2D扩展到了植被的生长和死亡率规则,以允许蜿蜒。我们通过在典型建模的曲线周期周围的数量级之间改变运行之间的扰动周期来测试横向迁移流入边界的效果。在从直线通道形成初始曲折形成后的截止级联之后,所有的植被显示一系列由滑槽截止终止的生长敏感。这产生了具有由滑槽,牛排湖泊和滚动条与滚动条与植被年龄模式截短的点杆复合物的复杂通道带的地形。从固有的生物形态反馈回路中出现的陷阱,编织指数和曲折时期与流入扰动时段无关,尽管动态均衡的旋转时间需要较长的时间和距离弱和缺乏流入扰动。这解释了原因,在先前的实验研究中,动态蜿蜒仅通过持续到相对于曲折波长短的持续上游扰动来实现。我们对自我形成的蜿蜒模式的建模是证据表明滚动条主导的和斜槽截止主导的蜿蜒从下游对流稳定性发展。这种洞察力延伸到更多河流,河口和沿海地区

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