SOIL THICKNESS SPATIAL DISTRIBUTION INFLUENCE ON FACTOR OF SAFETY EQUATION

Felipe Costa Abreu Lopes, Irani Dos Santos
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Abstract

Mass movements occurrences are well studied, however there are still possible improvements regarding their factor of safety simulation. This paper focus on the influence of spatialized pedological data and geotechnical data, two of the major limitations for this type of modeling. Numerous mass movements were triggered by an extreme precipitation event in southern Brazil, when the rainwaters reached 300mm in just 24 hours. A local watershed was chosen for field campaigns to supply a safety factor model and show the direct influence of field data on the result efficiency. For this, four different scenarios were created using combination of field data and spatialized soil thickness throughout the watershed area. The results showed an improve of 12% on the simulation efficiency when compared to a homogeneus soil thickness and average geotechnical values scenario, showing the importance of field studies for factor of safety simulations.
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土厚空间分布对安全系数方程的影响
群众运动的发生已经得到了很好的研究,但是在安全模拟方面仍有可能改进。本文重点讨论了空间化土壤学数据和岩土工程数据的影响,这是这类建模的两个主要限制。巴西南部的极端降水事件引发了大量的群众运动,当时的降雨量在24小时内达到了300毫米。选择一个当地的流域进行实地试验,以提供安全系数模型,并显示实地数据对结果效率的直接影响。为此,利用整个流域地区的现场数据和空间化土壤厚度的组合,创建了四种不同的场景。结果表明,与均匀土厚和平均岩土力学值情景相比,模拟效率提高了12%,显示了现场研究对安全系数模拟的重要性。
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