基于几何和土壤参数的边坡稳定性分析中临界滑移面模型的建立

 . W. Firomsa, Damtew Tsige
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引用次数: 1

摘要

通过比较多个试滑面的安全系数,可以确定边坡的临界破坏面。求出给定边坡的临界破坏面是求最小安全系数的关键。不同的搜索和优化方法在过去已经被使用,这些方法在手工计算中有困难。在本研究中,土强度参数的影响;对边坡破坏面黏聚力(c)、内摩擦角(φ)、单位重量()及边坡安全系数进行了研究。利用GEO5软件程序计算失效长度,确定临界失效面。引入了利用土体强度和边坡几何参数确定临界破坏面的方程。研究结果表明,边坡的安全系数随土体黏聚力c、内摩擦角φ、土体单位重的变化而变化。滑移面受无量纲函数()的影响,该函数与黏聚力、内摩擦角和单位重量有关。引入了基于土体强度和边坡几何特征的临界破坏面定位模型。
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Developing Model for Critical Slip Surface in Slope Stability Analysis based on Geometry and Soil parameters
The critical failure surface for a given slope can be determined by comparing factor of safety of several trial slip surfaces. To find the minimum factor of safety, it is important to get critical failure surface for the given slope. Different searching and optimization methods that had the difficulty in using them for hand calculations have been used in the past. In this study, effect of soil strength parameters; cohesion (c), internal friction angle (φ), and unit weight () on the failure surface and factor of safety of the slope were studied. GEO5 software program were used to calculate the length of failure and determine the critical failure surface. An equation was introduced in to locate the critical failure surface by using soils strength and slope geometry parameters. The results of the study showed that the factor of safety of the slope changes with varying cohesion c, internal friction angle φ, and the unit weight  of the soil. Moreover, the slip surface is affected by the dimensionless function (), which is related to the cohesion, internal friction angle and unit weight. Model was introduced in to locate the critical failure surface by using soils strength and slope geometry.
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