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Influence of the soil-atmosphere interaction on the collapse of sand in the Valle dei Templi in Agrigento

机译:土壤 - 大气相互作用对阿格里真托山谷Dei Templi坍塌的影响

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摘要

The sacral complex of the Valle dei Templi in Agrigento, belonging to the UNESCO Heritage Site List, stands over the crest of a stiff calcarenite bench, which overlies a layer of partially saturated carbonate sand. The retrogression of slopes and toppling phenomena that have occurred in the past, caused by the undermining combined with the discontinuity pattern, threaten some of the more relevant archaeological structures. Recent studies identified an open and metastable structure, typical of collapsible soils, for the sand layer under the calcarenite bench. In the sandy collapsible layer, significant vertical strains occur rapidly when the water content changes locally, decreasing suction and causing differential settlement and an increment of tensile stresses in the above calcarenites, where discontinuities might arise or increase their opening, resulting in possible progressive failure. By using meteorological and rainfall events data, the research presented here is focused on the study of the evapo-transpiration of a one-dimensional model of sand which was carried out in order to predict the water content change in the sandy layer. Successively, by calibrating the results through oedometer tests, the increments of water content were correlated to the amount of collapse. A first assessment of the influence of the soil-atmosphere interaction on the mechanism of collapse is then proposed.
机译:Agrigento的Valle dei Templi的骶骨综合体属于联合国教科文组织遗产名录,矗立在硬钙岩台的嵴上,覆盖一层部分饱和的碳酸盐砂。过去发生的斜坡和倒塌现象的倒退,由破坏结合不连续模式,威胁着一些更相关的考古结构。最近的研究确定了典型的可折叠土壤,用于岩浆替补席下的砂层。在含有含有含有含水量的含水层,在局部发生变化时,显着的垂直菌株迅速发生,降低吸力并导致上述钙化中的差异沉降和增量的拉伸应力,其中不连续性可能产生或增加它们的开口,导致可能的进展。通过使用气象和降雨事件数据,这里提出的研究专注于研究进行的砂岩一维模型的蒸发蒸腾,以预测砂层中的水含量变化。连续,通过校准结果通过噪声计测试,水含量的增量与崩溃量相关。然后提出了对土壤 - 大气相互作用对崩塌机制的影响的第一次评估。

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