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首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Liquid water infiltration into a layered snowpack: evaluation of a 3-D water transport model with laboratory experiments
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Liquid water infiltration into a layered snowpack: evaluation of a 3-D water transport model with laboratory experiments

机译:液态水渗透到分层积雪中:通过实验室实验评估3-D水传输模型

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pstrongAbstract./strong The heterogeneous movement of liquid water through the snowpack during precipitation and snowmelt leads to complex liquid water distributions that are important for avalanche and runoff forecasting. We reproduced the formation of capillary barriers and the development of preferential flow through snow using a three-dimensional water transport model, which was then validated using laboratory experiments of liquid water infiltration into layered, initially dry snow. Three-dimensional simulations assumed the same column shape and size, grain size, snow density, and water input rate as the laboratory experiments. Model evaluation focused on the timing of water movement, thickness of the upper layer affected by ponding, water content profiles and wet snow fraction. Simulation results showed that the model reconstructs relevant features of capillary barriers, including ponding in the upper layer, preferential infiltration far from the interface, and the timing of liquid water arrival at the snow base. In contrast, the area of preferential flow paths was usually underestimated and consequently the averaged water content in areas characterized by preferential flow paths was also underestimated. Improving the representation of preferential infiltration into initially dry snow is necessary to reproduce the transition from a dry-snow-dominant condition to a wet-snow-dominant one, especially in long-period simulations./p.
机译:> >摘要。在降水和融雪期间,液态水通过积雪的非均质运动会导致复杂的液态水分布,这对于雪崩和径流预报非常重要。我们使用三维水传输模型重现了毛细屏障的形成和优先通过雪流的形成,然后使用液态水渗透到分层,最初为干雪的实验室实验进行了验证。三维模拟假定圆柱形状和大小,晶粒大小,雪密度和进水速率与实验室实验相同。模型评估的重点是水的运动时间,受积水影响的上层厚度,含水量分布和湿雪分数。仿真结果表明,该模型重构了毛细屏障的相关特征,包括上层积水,远离界面的优先渗透以及液态水到达雪基的时间。相反,优先流动路径的面积通常被低估,因此,以优先流动路径为特征的区域中的平均含水量也被低估了。要重现从干雪为主的状态到湿雪为主的状态,特别是在长期模拟中,必须改善优先入渗到干雪中的表示形式。

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