用于评估伊拉克东北部库尔德斯坦地区埃尔比勒梅尔加苏尔镇选定区域岩石斜坡稳定性的 Q-Slope 系统

Q3 Earth and Planetary Sciences
R. Qader, G. Hamasur, A. Surdashy
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引用次数: 0

摘要

岩石边坡、边坡高度、岩石不连续性方向以及未设计的开挖边坡是造成山区道路不稳定的主要因素。我们选择了伊拉克东北部默尔加苏尔镇的八个岩石斜坡进行稳定性评估,采用 DIPS v6.008 软件的运动学方法确定斜坡破坏类型,并采用 Q 斜坡系统确定稳定性状况。这是一种对岩石斜坡工程进行分类的有效方法。根据运动学结果,1-5 和 7 号站可能发生平面滑动,而 4-8 号站可能发生楔形滑动,1、2 和 7-8 号站可能发生挠曲倾覆,3 号站可能发生直接倾覆。根据 Q 斜坡系统的结果,通过在 Q 斜坡图上投影 Q 斜坡和斜坡角值来确定稳定性条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Q-Slope System for Assessing the Stability of Rock Slopes in Selected Area, Mergasur Town, Erbil, Kurdistan Region, NE Iraq
Rock slope, slope height, rock discontinuity orientations, and undesigned excavated slopes are the primary contributing factors to the instability of the road in the mountain area. The eight rock slopes in Mergasur town, NE-Iraq, were chosen to be assessed for stability using the kinematic approach with DIPS v6.008 software to determine the type of slope failure and the Q-slope system applied to determine the stability condition. This is an efficient approach for classifying rock slope engineering. According to the kinematic results, stations 1–5 and 7 may have planar sliding, whereas stations 4–8 may experience wedge sliding, stations 1, 2, and 7-8 may experience flexural toppling, and station 3 may have direct toppling. In accordance with the Q-slope system results, stability conditions are determined by projecting the Q-slope and slope angle values on the Q-slope chart.
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来源期刊
Iraqi Geological Journal
Iraqi Geological Journal Earth and Planetary Sciences-Geology
CiteScore
1.80
自引率
0.00%
发文量
152
审稿时长
7 weeks
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