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首页> 外文期刊>Journal of Soft Computing in Civil Engineering >Slope Stability Evaluation Using Tangent Similarity Measure of Fuzzy Cube Sets
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Slope Stability Evaluation Using Tangent Similarity Measure of Fuzzy Cube Sets

机译:利用模糊立方体集的切线相似度量坡度稳定性评估

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Due to various geological problems and geological materials of the slope, there is a kind of non-continuous and uncertain natural geological body. Because of the complexity of various external factors, slope stability is not easy to be determined, which leads to the ambiguity of human’s judgments between stability and instability. Therefore, it is crucial that a simple evaluation method for judging the slope stability with uncertain information is established in slope stability analysis. This study selects nine impact factors: the lithology type, the slope structure, the development degree of discontinuity, the relationship between inclination and slope of discontinuities, the slope height, the slope angle, the mean annual precipitation, the weathering degree of rock, and the degree of human action, which can be expressed as the fuzzy cubic information (the hybrid information of both a fuzzy value and an interval-valued fuzzy number). Then, a tangent similarity measure between fuzzy cube sets (FCSs) is developed for the slope stability evaluation, where the tangent similarity measure values between FCSs of the slope sample and FCSs of slope stability grades/patterns (stability, slight stability, slight instability, and instability) are used for the assessment of the slope stability in FCS environment. Lastly, eight slope samples are provided as the actual cases to show that the eight evaluation results of slope stability using the proposed similarity measure of FCSs are in accordance with the actual results of the eight actual cases, which indicate the effectiveness of the proposed method under FCS environment.
机译:由于各种地质问题和坡地地质材料,存在一种非连续和不确定的自然地质体。由于各种外部因素的复杂性,不容易确定坡度稳定性,这导致人类稳定性和不稳定性之间的判断的模糊性。因此,在斜率稳定性分析中建立了在斜率稳定性分析中建立了一种简单的评价方法,以判断具有不确定信息的边坡稳定性的简单评价方法。本研究选择了九个影响因素:岩性型,斜坡结构,不连续性的开发程度,倾斜和坡度之间的关系,斜坡高,坡角,平均年降水,岩石风化程度,岩石风化程度人类行为的程度可以表达为模糊立方体信息(模糊值的混合信息和间隔值模糊数)。然后,为斜率稳定性评估开发了模糊立方集(FCSS)之间的切线相似度测量,其中斜率样本的FCS之间的切线相似度测量值和斜率稳定性等级/图案的FCS(稳定性,轻微稳定性,轻微不稳定性,并且不稳定)用于评估FCS环境中的斜率稳定性。最后,提供了八个坡度样本作为实际情况,表明使用拟议的FCS的坡度稳定性的八种评估结果符合八个实际情况的实际结果,这表明所提出的方法的有效性FCS环境。

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