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A multi-dimensional water transport model to reproduce preferential flow in the snowpack

机译:多维水运模型重现积雪堆中的优先流动

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A multi-dimensional water transport model for a snowpack was developed to reproduce preferential flow. Darcy-Buckingham's law and the van Genuchten model were used to simulate water movement. Parameters for the van Genuchten model were determined as functions of snow density and grain size, based on a previous gravity drainage column experiment. Water entry suction was newly incorporated to simulate liquid water infiltrating dry snow, based on the results of a previous capillary pressure experiment Heterogeneity of grain size and snow density were also implemented. Heterogeneity alone was not sufficient for the development of preferential flow paths. When both water entry suction and heterogeneity were implemented, the model could simulate the formation of a preferential flow path. Validation of the simulation results by comparison with the results of a previous laboratory experiment showed that the simulated preferential flow path reproduced the experimental result fairly well. The size of the preferential flow path was negatively correlated with grain size and positively correlated with the water supply rate in both the simulation and the experiment. Comparison of the time series of suction between the simulation and the experimental result suggested that some additional measurements need to be obtained experimentally to improve the accuracy of the model. Sensitivity experiments showed that grain size and snow density heterogeneity affected both the size of the preferential flow path and the arrival time of liquid water at the snow base. These results suggest that more measurements of small-scale spatial variability in natural snow are needed to improve the model.
机译:开发了用于积雪的多维水运输模型以重现优先流量。达西-白金汉定律和范·Genuchten模型被用来模拟水的运动。根据先前的重力排水柱实验,将van Genuchten模型的参数确定为雪密度和粒度的函数。在先前毛细管压力实验的结果的基础上,新引入了吸水口吸水以模拟液态水渗入干雪,还实现了粒度和雪密度的异质性。仅异质性不足以发展优先流动路径。当同时实现了吸水和非均质性时,该模型可以模拟优先流动路径的形成。通过与先前实验室实验的结果进行比较,对模拟结果进行验证,结果表明,模拟的优先流路能够很好地再现实验结果。在模拟和实验中,优先流动路径的尺寸与晶粒尺寸成负相关,与供水速率成正相关。模拟和实验结果之间的吸力时间序列比较表明,需要通过实验获得一些额外的测量值以提高模型的准确性。敏感性实验表明,颗粒大小和积雪密度的异质性都会影响优先流径的大小和液态水到达雪基的时间。这些结果表明,需要更多的自然雪中小尺度空间变异性的测量来改进模型。

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