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Hydraulic behaviour of unsaturated pyroclastic soil observed at different scales

机译:不同尺度观察不饱和吡罗基痉挛土的水力行为

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Proper soil water retention curves (SWRCs) and hydraulic conductivity functions (HCFs) are necessary for a fair analysis of groundwater flow in unsaturated slopes. In principle SWRC is hysteretic; as a consequence, laboratory characterization may not be sufficient to determine the scanning curve and the hydraulic parameters operating in situ. In this paper some results obtained by tests at different scales (testing on laboratory specimens and physical prototype and measuring in an experimental field) are presented in order to explore the hydraulic behaviour of pyroclastic soils. As regards HCF, in the paper the comparison between the hydraulic conductivity functions obtained from inverse analysis of evaporation lab tests, and the conductivity values estimated on the basis of both in situ measurements and results of tests on the aforementioned physical model is proposed. From these results, the physical prototype size (medium scale) seems to be acceptable for determinations of both SWRC and HCF.
机译:适当的土壤水保留曲线(SWRC)和液压导电功能(HCFS)对于不饱和斜坡中的地下水流动进行公平分析。原则上SWRC是滞后的;结果,实验室表征可能不足以确定扫描曲线和原位操作的液压参数。在本文中,提出了一些通过在不同尺度的测试获得的结果(在实验室标本和物理原型和实验领域测量)以探讨吡焦土壤的液压行为。关于HCF,在纸张中,提出了从蒸发实验室测试的逆分析中获得的液压导电功能的比较,以及基于原位测量和上述物理模型的测试结果估计的电导率值。从这些结果来看,物理原型尺寸(中等规模)似乎是可接受的,用于SWRC和HCF的确定。

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