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Expansion and contraction of the flowing stream network alter hillslope flowpath lengths and the shape of the travel time distribution

机译:流动流网络的扩展和收缩改变山坡流路长度和行程时间分布的形状

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Flowing stream networks dynamically extend and retract, both seasonally and in response to precipitation events. These network dynamics can dramatically alter the drainage density and thus the length of subsurface flow pathways to flowing streams. We mapped flowing stream networks in a small Swiss headwater catchment during different wetness conditions and estimated their effects on the distribution of travel times to the catchment outlet. For each point in the catchment, we determined the subsurface transport distance to the flowing stream based on the surface topography and determined the surface transport distance along the flowing stream to the outlet. We combined the distributions of these travel distances with assumed surface and subsurface flow velocities to estimate the distribution of travel times to the outlet. These calculations show that the extension and retraction of the stream network can substantially change the mean travel time and the shape of the travel time distribution. During wet conditions with a fully extended flowing stream network, the travel time distribution was strongly skewed to short travel times, but as the network retracted during dry conditions, the distribution of the travel times became more uniform. Stream network dynamics are widely ignored in catchment models, but our results show that they need to be taken into account when modeling solute transport and interpreting travel time distributions.
机译:流动的流网络动态地延伸和缩回,既季节性和响应降水事件。这些网络动态可以显着改变排水密度,并因此改变排水密度,从而使地下流动通路的长度流入流动流。在不同的湿度条件下,我们在小瑞士散热器集水区中映射了流动的流网络,并估计它们对集水区的行程时间分布的影响。对于集水器中的每个点,我们基于表面形貌确定与流动流的地下传送距离,并确定沿着流动流的表面传送距离到出口。我们将这些行程距离的分布与假定的表面和地下流速相结合,以估计行程时间的分布到出口。这些计算表明,流网络的扩展和缩回可以基本上改变平均行程时间和行进时间分布的形状。在具有完全扩展的流动流网络的潮湿条件下,行程时间分布非常倾斜至短时间,但随着网络在干燥条件下缩回,行进时间的分布变得更加均匀。流网络动态广泛忽略在集水机型中,但我们的结果表明,在建模溶质运输和解释旅行时间分布时需要考虑它们。

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