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Research on improving Rock Slope Fuzzy-precise Evaluation Method

机译:改进岩石坡模糊 - 精确评价方法的研究

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The rock mass quality classification method was introduced for the strength parameters and deformation parameters when carrying out quantitative classification and provided a theoretical basis; Introducing unloading rock mechanics theory, the infiltration conditions of the surface, drainage measures, catchment area as well as the subsequent impact of buildings on the slope were considered in order to increase the coverage of evaluation factors; Considering finite element analysis results of three-dimensional model and reference targets selected, one kind of improved numerical analysis method based on fuzzy - accurate evaluation of slope stability was proposed. The method is based on finite element model of the calculation results and the appropriate references selected, having the calculation analysis of certain factors on the slope stability a quantitative treatment, thus objectively established the weight ratio between these factors, avoiding subjective awareness in expert scoring impacting evaluation results too large. With practical engineering analysis it shows: the method is directed against rock slope analysis, make more factors impacting rock slope stability involved in evaluation, and easy to operate.
机译:在进行定量分类时,引入了强度参数和变形参数的岩体质量分类方法,并提供了理论基础;揭示卸载岩石力学理论,表面渗透条件,排水措施,集水区以及随后的建筑物对斜坡上的影响,以增加评估因素的覆盖范围;考虑了选择三维模型的有限元分析结果和所选参考目标,提出了一种基于模糊准确评估的边坡稳定性的改进数值分析方法。该方法基于计算结果的有限元模型和所选择的适当参考,具有对坡稳定性的某些因素的计算分析,因此客观地建立了这些因素之间的重量比,避免了专家评分的主观意识评估结果太大了。实用工程分析显示:该方法是针对岩石斜坡分析的,使得影响岩石边坡稳定性涉及评估,易于操作。

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