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Seasonal change in permeability of surface soils on a slow-moving landslide in a heavy snow region

机译:大雪地区缓慢移动滑坡上表面土壤渗透性的季节变化

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This study demonstrated seasonal changes in the topsoil permeability due to vegetation growth in summer and snow loading in winter of a landslide in a temperate snowy area of northern Japan, which is underlain by soft Neogene sedimentary rocks. The decrease in saturated hydraulic conductivity due to loading was also examined for undisturbed and remolded specimens of surface soils from the landslide, using a newly developed apparatus for the consolidation permeability test. Infiltration capacity measured in the field increased gradually after snow-melt to a peak in midsummer and decreased exponentially with increasing snow load in winter. In the laboratory experiment, saturated hydraulic conductivity declined as an exponential function of loading. The topsoil was permeable enough to infiltrate rainwater into the ground, even for intense rain storms in summer, but became less permeable under heavy snow load during winter and was not capable of full infiltration of meltwater during the snowmelt period. This suggested that Hortonian overland flow should occur in late winter, at least patchily, under the melting snowpack. (C) 2017 Elsevier B.V. All rights reserved.
机译:本研究表明,由于日本北部的温带雪地雪地的冬季,夏季和雪地升降机的植被生长,夏季植被增长的季节性变化稳定性。还使用用于固结渗透性测试的新开发的装置,检查引起负载引起的饱和液压传导率导致的饱和液压导电率降低。在雪地融化到仲夏的峰值后,在田间测量的渗透能力逐渐增加,并随着冬季的雪负荷逐渐下降。在实验室实验中,饱和液压导电率下降作为负载的指数函数。透过于夏天的暴雨风暴即使在冬季的大雪负荷下变得越来越渗透,渗透到地面上的雨水渗透到地上,而且在雪花期间,甚至在冬季的雪负荷下变得不那么渗透。这表明Hortonian陆上流动应在冬季沉积的冬季发生,融资下繁殖。 (c)2017 Elsevier B.v.保留所有权利。

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