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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Interplay between spatially explicit sediment sourcing, hierarchical river-network structure, and in-channel bed material sediment transport and storage dynamics
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Interplay between spatially explicit sediment sourcing, hierarchical river-network structure, and in-channel bed material sediment transport and storage dynamics

机译:空间显式沉积物采购,等级河流结构和渠道床材料沉积物运输及储存动力学之间的相互作用

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摘要

Understanding how sediment moves along source to sink pathways through watershedsfrom hillslopes to channels and in and out of floodplainsis a fundamental problem in geomorphology. We contribute to advancing this understanding by modeling the transport and in-channel storage dynamics of bed material sediment on a river network over a 600year time period. Specifically, we present spatiotemporal changes in bed sediment thickness along an entire river network to elucidate how river networks organize and process sediment supply. We apply our model to sand transport in the agricultural Greater Blue Earth River Basin in Minnesota. By casting the arrival of sediment to links of the network as a Poisson process, we derive analytically (under supply-limited conditions) the time-averaged probability distribution function of bed sediment thickness for each link of the river network for any spatial distribution of inputs. Under transport-limited conditions, the analytical assumptions of the Poisson arrival process are violated (due to in-channel storage dynamics) where we find large fluctuations and periodicity in the time series of bed sediment thickness. The time series of bed sediment thickness is the result of dynamics on a network in propagating, altering, and amalgamating sediment inputs in sometimes unexpected ways. One key insight gleaned from the model is that there can be a small fraction of reaches with relatively low-transport capacity within a nonequilibrium river network acting as bottlenecks that control sediment to downstream reaches, whereby fluctuations in bed elevation can dissociate from signals in sediment supply.
机译:了解沉积物沿着源头沿着水槽通道通过流域从山坡上移动到渠道,进出洪泛党在地貌上的基本问题。我们通过在600年的时间段内通过在河网络上建模床材料沉积物的运输和在线存储动态来提高这种理解。具体地,我们沿着整个河网络呈现床沉积物厚度的时空变化,以阐明河流网络组织和处理沉积物供应。我们将模型应用于明尼苏达州农业大蓝土河流域的沙子运输。通过将沉积物的到达作为网络的链接作为泊松过程,我们通过分析(在供电有限的条件下)河流网络每个链路的床沉积物厚度的时间平均概率分布函数,用于输入的任何空间分布。在运输限制条件下,泊松到达过程的分析假设被侵犯(由于在通道内存储动态),在那里我们在床沉积物厚度的时间序列中找到了大的波动和周期性。床沉积物厚度的时间序列是在繁殖,改变和混合沉积物进入时动态的动态的结果有时意外的方式。从模型中收集的一个关键洞察力是,在非QuilibriaM河网络中,由于控制沉积物到下游的瓶颈,可以存在一小部分达到的达到相对低的运输能力,从而可以从沉积物供应中的信号解离信号中的波动。

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