An evaluation method of open-pit slope stability based on Poset theory

Abstract To achieve an objective and reasonable judgment on slope stability, the partially ordered set (Poset) theory is applied to the slope stability evaluation against the engineering background of an open pit slope. From the four aspects of rock mass structural characteristics, slope morphology,...

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التفاصيل البيبلوغرافية
الحاوية / القاعدة:Geomechanics and Geophysics for Geo-Energy and Geo-Resources
المؤلفون الرئيسيون: Juyu Jiang, Jianxiong Sun, Dong Wang, Laigui Wang, Lanzhu Cao, Mingxiang Cai
التنسيق: مقال
اللغة:الإنجليزية
منشور في: Springer 2024-01-01
الموضوعات:
الوصول للمادة أونلاين:https://doi.org/10.1007/s40948-023-00708-y
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author Juyu Jiang
Jianxiong Sun
Dong Wang
Laigui Wang
Lanzhu Cao
Mingxiang Cai
author_facet Juyu Jiang
Jianxiong Sun
Dong Wang
Laigui Wang
Lanzhu Cao
Mingxiang Cai
author_sort Juyu Jiang
collection DOAJ
container_title Geomechanics and Geophysics for Geo-Energy and Geo-Resources
description Abstract To achieve an objective and reasonable judgment on slope stability, the partially ordered set (Poset) theory is applied to the slope stability evaluation against the engineering background of an open pit slope. From the four aspects of rock mass structural characteristics, slope morphology, environment conditions and engineering conditions, 24 typical evaluation indices such as cohesion, internal friction angle, elastic modulus and Poisson’s ratio are selected. Based on the Poset theory, a Poset evaluation model is established. According to the slope stability evaluation indices and the risk grade classification criteria, the slope stability risk grade is divided into four grades: stable (Grade I), generally stable (Grade II), slightly stable (Grade III) and unstable (Grade IV). The index data are normalized and the weight ranking information is used. Implicit weighting is carried out by means of accumulation. The comparison relation matrix, the Hasse matrix and the Hasse diagram are constructed for each factor layer and comprehensive index layer, respectively. This method was utilized to evaluate the risk grade of an engineering example, determine the slope risk grade, and compare with the actual situation. The results show that the slope to be evaluated is generally stable (Grade II) under the comprehensive evaluation indices of various factors, and the assessed stability condition is consistent with the actual situation. These verify the rationality and applicability of the proposed method and provide a new insight for accurately identifying the stability condition of open-pit slopes.
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spelling doaj-art-e3e93d88bcc84ab89f5e6dccb40843982025-08-20T00:18:55ZengSpringerGeomechanics and Geophysics for Geo-Energy and Geo-Resources2363-84192363-84272024-01-0110111910.1007/s40948-023-00708-yAn evaluation method of open-pit slope stability based on Poset theoryJuyu Jiang0Jianxiong Sun1Dong Wang2Laigui Wang3Lanzhu Cao4Mingxiang Cai5College of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityCollege of Mining, Liaoning Technical UniversityGuoneng Xinjiang Zhundong Energy Co., Ltd.Abstract To achieve an objective and reasonable judgment on slope stability, the partially ordered set (Poset) theory is applied to the slope stability evaluation against the engineering background of an open pit slope. From the four aspects of rock mass structural characteristics, slope morphology, environment conditions and engineering conditions, 24 typical evaluation indices such as cohesion, internal friction angle, elastic modulus and Poisson’s ratio are selected. Based on the Poset theory, a Poset evaluation model is established. According to the slope stability evaluation indices and the risk grade classification criteria, the slope stability risk grade is divided into four grades: stable (Grade I), generally stable (Grade II), slightly stable (Grade III) and unstable (Grade IV). The index data are normalized and the weight ranking information is used. Implicit weighting is carried out by means of accumulation. The comparison relation matrix, the Hasse matrix and the Hasse diagram are constructed for each factor layer and comprehensive index layer, respectively. This method was utilized to evaluate the risk grade of an engineering example, determine the slope risk grade, and compare with the actual situation. The results show that the slope to be evaluated is generally stable (Grade II) under the comprehensive evaluation indices of various factors, and the assessed stability condition is consistent with the actual situation. These verify the rationality and applicability of the proposed method and provide a new insight for accurately identifying the stability condition of open-pit slopes.https://doi.org/10.1007/s40948-023-00708-ySlopeStabilityPosetRisk evaluation
spellingShingle Juyu Jiang
Jianxiong Sun
Dong Wang
Laigui Wang
Lanzhu Cao
Mingxiang Cai
An evaluation method of open-pit slope stability based on Poset theory
Slope
Stability
Poset
Risk evaluation
title An evaluation method of open-pit slope stability based on Poset theory
title_full An evaluation method of open-pit slope stability based on Poset theory
title_fullStr An evaluation method of open-pit slope stability based on Poset theory
title_full_unstemmed An evaluation method of open-pit slope stability based on Poset theory
title_short An evaluation method of open-pit slope stability based on Poset theory
title_sort evaluation method of open pit slope stability based on poset theory
topic Slope
Stability
Poset
Risk evaluation
url https://doi.org/10.1007/s40948-023-00708-y
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