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The Effects of Slope Initialization on the Numerical Model Predictions of the Slope-Vegetation-Atmosphere Interaction

机译:坡初始化对坡植被 - 气氛互动数值模型预测的影响

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Deep slope movements and, eventually, slope failure, have been often interpreted to be due to slope-vegetation-atmosphere interaction on slopes formed of clayey materials in the Italian Southern-Eastern Apennines, as reported in the literature. Such slopes are generally formed of flysch, within which clay is the main lithotype. Such clays are characterized by a disturbed meso-fabric, as an effect of the intense tectonics. The paper presents the results of coupled hydromechanical numerical analyses of the slope-vegetation-atmosphere interaction for a clay slope representative for the geomechanical scenario where such climate-induced deep slope movements have been repeatedly recorded. In the analyses, different model initialization procedures and parameter values were adopted. The comparison of the numerical results with the site data is aimed at assessing the effects of the soil-vegetation-atmosphere interaction taking place in the top strata of the slope, on the stress-strain conditions across the whole slope, and on the slope stability. The comparison between the numerical results of the analyses carried out entailing different initialization stages are intended to evaluate the influence of such a stage on the model predictions. It is found that only when the slope model initialization accounts for the slope loading history, developed over geological time, the numerical predictions get close to the site observations. In such case, the numerical results confirm that deep movements consequent to progressive failure may take place in clay slopes due to the slope-vegetation-atmosphere interaction.
机译:深度坡度和最终坡度故障,往往是由于在文献中报道的意大利南部亚平地区由意大利南端亚平地区的粘土材料形成的斜坡坡度的坡度 - 植被 - 气氛相互作用。这种斜率通常由氟氏,其中粘土是主晶型。这种粘土的特征在于一种受扰动的中间织物,作为强烈构造的效果。本文介绍了对粘土坡度代表的斜坡 - 植被 - 大气相互作用的耦合流体力学数值分析的结果,其中这种气候诱导的深度倾斜运动被重复记录。在分析中,采用了不同的模型初始化过程和参数值。与现场数据的数值结果的比较旨在评估土壤 - 植被 - 大气相互作用在坡度的顶部地层中发生的影响,对整个坡度的应力 - 应变条件以及斜坡稳定性。在需要不同初始化阶段的分析的数值结果之间的比较旨在评估这种阶段对模型预测的影响。发现只有在斜率模型初始化占据斜率负载历史上时,数值预测才会接近现场观察。在这种情况下,数值结果证实,由于坡度 - 植被 - 气氛相互作用,粘土斜坡可能发生逐渐失败的深度运动。

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