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Discontinuous rock slope stability analysis under blocky structural sliding by fuzzy key-block analysis method

机译:块状结构滑移不连续边坡稳定性的模糊键块分析法

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摘要

This study presents a fuzzy logical decision-making algorithm based on block theory to effectively determine discontinuous rock slope reliability under various wedge and planar slip scenarios. The algorithm was developed to provide rapid response operations without the need for extensive quantitative stability evaluations based on the rock slope sustainability ratio. The fuzzy key-block analysis method utilises a weighted rational decision (multi-criteria decision-making) function to prepare the ‘degree of reliability (degree of stability-instability contingency)’ for slopes as implemented through the Mathematica software package. The central and analyst core of the proposed algorithm is provided as based on discontinuity network geometrical uncertainties and hierarchical decision-making. This algorithm uses block theory principles to proceed to rock block classification, movable blocks and key-block identifications under ambiguous terms which investigates the sustainability ratio with accurate, quick and appropriate decisions especially for novice engineers in the context of discontinuous rock slope stability analysis. The method with very high precision and speed has particular matches with the existing procedures and has the potential to be utilised as a continuous decision-making system for discrete parameters and to minimise the need to apply common practises. In order to justify the algorithm, a number of discontinuous rock mass slopes were considered as examples. In addition, the SWedge, RocPlane softwares and expert assignments (25-member specialist team) were utilised for verification of the applied algorithm which led to a conclusion that the algorithm was successful in providing rational decision-making.
机译:这项研究提出了一种基于块理论的模糊逻辑决策算法,可以有效地确定在各种楔形和平面滑动情况下不连续岩质边坡的可靠性。该算法的开发是为了提供快速响应操作,而无需基于岩质边坡可持续性比率进行广泛的定量稳定性评估。模糊关键块分析方法利用加权理性决策(多准则决策)功能,为通过Mathematica软件包实施的边坡准备“可靠度(稳定度-不稳定性偶然性)”。基于不连续网络几何不确定性和分层决策,提供了所提出算法的中心和分析人员核心。该算法使用块理论原理进行模棱两可的术语下的岩石块分类,可移动块和关键块识别,从而以准确,快速和适当的决策来研究可持续性比率,特别是对于不连续岩质边坡稳定性分析的新手工程师。该方法具有很高的精度和速度,与现有的程序特别匹配,并且有可能被用作离散参数的连续决策系统,并可以最大程度地减少应用常规方法的需要。为了证明该算法的正确性,以许多不连续的岩体坡度为例。此外,利用SWedge,RocPlane软件和专家分配(由25名成员组成的专家团队)验证了所应用的算法,得出的结论是该算法成功地提供了合理的决策。

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