利用有限元分析边坡稳定性:以玻利维亚拉巴斯为例

Daniela Gurruchaga R., Fabiana Viscarra A.
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引用次数: 0

摘要

边坡的地质力学分析是岩土工程领域的一项重要应用。这一事实包含了自然或人工边坡稳定条件的评价。通过建模与工程准则的结合,可以对评价过程进行优化。重要的是应用数学模型,重点分析目标和预期结果;应力应变法可以确定边坡的抗力和变形参数,能够重现其自然行为[1]。目前的研究适用于拉巴斯市的一个特定区域,名为Villa Exaltacion。本研究的目的是通过有限元进行边坡稳定性分析,以确定需要修复的区域。稳定性替代方案的评价也包括在内。这些替代方案从简单的修复技术(不稳定材料移除、坡脚削弱、减少倾斜、脚趾平衡)到复杂的稳定工程,如桩帘。结果表明,采用顶坡下切技术可以带来稳定的条件和最小的应变产生,是一种令人满意的、可行的、低复杂度的解决方案。最后,通过极限平衡分析进行了验证。两种方法均取得了满意的结果,表明数值方法更具代表性和保守性。土壤参数的标定过程对可靠模型的生成起着关键作用;为了确定稳定边坡所需的最小参数,对临界条件进行了模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANÁLISIS DE ESTABILIDAD DE TALUDES MEDIANTE EL EMPLEO DE ELEMENTOS FINITOS: UN CASO DE ESTUDIO EN LA PAZ – BOLIVIA
The geomechanically analysis of slopes is one important application within the geotechnical engineering scope; this fact comprehends the evaluation of natural or artificial slope stability conditions. Such evaluation process can be optimized by means of modelling combined with engineer criteria. It is important to apply a mathematical model that focuses in the analysis objective and expected results; stress-strain methods allow determining the resistant and deformational parameters in a slope, being capable to reproduce its natural behavior [1]. The present research applies to a specific sector of La Paz city, named Villa Exaltacion. The objective of this study is the performing of slope stability analysis through finite elements, in order to determine the areas that need remediation.  The evaluation of stability alternatives it is also included. These alternatives go from simple remediation techniques (unstable material removal, slope undercut, inclination reduction, toe counterweight) to complex stabilization works such as pile curtains. The results reveal that a head slope undercut technique can bring stable conditions and minimal strain generation, being a satisfactory and feasible answer with low complexity works. Finally, verification was performed by means of limit equilibrium analysis. Both methodologies show satisfactory results, demonstrating that numerical methods are more representative and conservative. The calibration process of soil parameters plays a key role for the generation of a reliable model; critical conditions were simulated in order to determine minimal parameters needed for a stable slope.
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