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Effects of snow cover on soil freezing, water movement, and snowmelt infiltration: A paired plot experiment

机译:积雪对土壤冻结,水分运动和融雪入渗的影响:配对试验

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摘要

A dramatic reduction in soil frost depth has been reported for Hokkaido Island of northern Japan over the last 20 years. Since soil frost strongly affects snowmelt infiltration and runoff, the reduction in frost depth may have altered the water and nutrient cycles in this region. A paired‐plot experiment was conducted in an agricultural field in Tokachi, Hokkaido, to compare the movement of soil water at different frost depths, controlled by manipulating the depth of snow cover. Snow was removed to enhance soil freezing in the treatment plot and was undisturbed in the control plot. The soil froze to a maximum depth of 0.43 m under the treatment plot and 0.11 m under the control plot. During the freezing period, the amount of upward soil water flux toward the freezing front in the treatment plot was more than double that in the control plot. During the snowmelt period, infiltration of meltwater was unimpeded by the thin frozen layer in the control plot, whereas the relatively thick frozen layer in the treatment plot impeded infiltration and generated 63 mm of runoff. These results clearly show that the changes in the timing and thickness of snow cover deposition can cause a dramatic reduction of frost depth and change in the soil water dynamics.
机译:据报道,在过去的20年中,日本北部的北海道岛的土壤霜冻深度大大降低。由于土壤霜冻会严重影响融雪的渗透和径流,因此霜冻深度的减少可能已经改变了该地区的水分和养分循环。在北海道十胜市的一个农田上进行了成对实验,比较了通过控制积雪深度控制的不同霜冻深度下土壤水的运动。去除雪以增强处理区的土壤冻结,而在对照区则不受干扰。在处理地带土壤冻结至最大深度为0.43 m,在控制地带土壤冻结至0.11 m。在冻结期间,处理区朝冻结前沿的向上土壤水通量大于对照区的两倍。在融雪期间,对照区的薄层冻结层不会阻止融水的渗透,而处理区的较厚的冻结层会阻止渗透,并产生63毫米的径流。这些结果清楚地表明,积雪的时间和厚度的变化会导致霜冻深度的急剧减少和土壤水分动力学的变化。

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