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围岩松动圈理论计算方法的评述与展望 被引量:40
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作者 刘刚 肖勇卓 +1 位作者 朱俊福 靖洪文 《煤炭学报》 EI CAS CSCD 北大核心 2021年第1期46-56,共11页
研究围岩松动圈的目的是指导地下工程的设计与施工,相比于现场实测和数值模拟分析,理论计算围岩松动圈更为方便快捷。综述了2种主要的松动圈理论计算方法——强度准则法和数学模型法。强度准则法以Mohr-Coulomb准则、Hoek-Brown准则和Dr... 研究围岩松动圈的目的是指导地下工程的设计与施工,相比于现场实测和数值模拟分析,理论计算围岩松动圈更为方便快捷。综述了2种主要的松动圈理论计算方法——强度准则法和数学模型法。强度准则法以Mohr-Coulomb准则、Hoek-Brown准则和Druker-Prager准则为主,普遍经塑性区半径推导、松动区与塑性区界分和岩石强度参数修正可得到较准确的松动圈半径,其关键在于松动区的边界条件和岩石软化方法,并建议以应力梯度作为边界条件和以参数反演修正岩石参数进行计算,同时也简要评述了以动静力学思路和统一强度准则为基础的松动圈计算。数学模型法主要是基于对松动圈影响因素的研究,常采用神经网络模型和支持向量机模型,以及未确知聚类模型和多元回归函数拟合等,其关键在于松动圈影响因素的选择和建模选型。松动圈影响因素选择的重点在于次要因素,而建模选型在于引入其他模型对原有模型的核心元素进行寻优。建议应因地制宜地选择影响因素或引入灰色预测模型,同时必须经本地数据库训练修正后使模型达到最佳。实际工程中,由于强度准则法基于均质岩体中静水应力作用下的圆形巷道模型,巷道半径和侧应力系数取值及岩性不均一将会严重影响计算精度;数学模型法受制于影响因素考虑不足及现有数据库噪声等条件而难以提高预测精度。结合围岩松动圈实测技术,由于受众多因素影响,巷道同一横断面内、同一巷道相邻地段的松动圈均在一定范围内波动,故任何非实测方法均不能精确预测松动圈厚度。在工程应用中,不主张在难以符合强度准则法的假设条件或者数学模型中未知的次要因素影响较大的条件下采用计算的方法确定松动圈厚度。后续研究可从新强度准则推导或多个单预测模型相结合与数据等维等方面进行,同时应关注在深部多种地质条件下松动圈的理论计算以及矩形和其它非规则形状巷道松动圈的理论计算,并提高预测精度。 展开更多
关键词 围岩松动圈 强度准则法 数学模型 预测精度 实测方
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An improved limit equilibrium method for rock slope stability analysis under stress-based calculation mode for slip surface
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作者 DENG Dong-ping ZHANG Dian +1 位作者 PENG Yi-hang CHEN Hao-yu 《Journal of Central South University》 2025年第1期262-287,共26页
This study proposes an alternative calculation mode for stresses on the slip surface(SS).The calculation of the normal stress(NS)on the SS involves examining its composition and expanding its unknown using the Taylor ... This study proposes an alternative calculation mode for stresses on the slip surface(SS).The calculation of the normal stress(NS)on the SS involves examining its composition and expanding its unknown using the Taylor series.This expansion enables the reasonable construction of a function describing the NS on the SS.Additionally,by directly incorporating the nonlinear Generalized Hoke-Brown(GHB)strength criterion and utilizing the slope factor of safety(FOS)definition,a function of the shear stress on the SS is derived.This function considers the mutual feedback mechanism between the NS and strength parameters of the SS.The stress constraints conditions are then introduced at both ends of the SS based on the spatial stress relation of one point.Determining the slope FOS and stress solution for the SS involves considering the mechanical equilibrium conditions and the stress constraint conditions satisfied by the sliding body.The proposed approach successfully simulates the tension-shear stress zone near the slope top and provides an intuitive description of the concentration effect of compression-shear stress of the SS near the slope toe.Furthermore,compared to other methods,the present method demonstrates superior processing capabilities for the embedded nonlinear GHB strength criterion. 展开更多
关键词 stability of rock slope nonlinear GHB strength criterion limit equilibrium method stress function on slip surface stress constraint conditions at both ends of slip surface
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Strength criterion for crystalline rocks considering grain size effect and tensile-compressive strength ratio
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作者 ZHANG Cheng-han JI Hong-guang +3 位作者 JIANG Peng YOU Shuang GENG Qian-cheng JIAO Chen-jiang 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2365-2378,共14页
The macroscopic mechanical properties of rocks are significantly influenced by their microstructure.As a material bonded by mineral grains,the grain morphology of crystalline rock is the primary factor influencing the... The macroscopic mechanical properties of rocks are significantly influenced by their microstructure.As a material bonded by mineral grains,the grain morphology of crystalline rock is the primary factor influencing the strength.However,most strength criteria neglect the strength variations caused by different grain characteristics in rocks.Furthermore,the traditional linear criteria tend to overestimate tensile strength and exhibit apex singularity.To address these shortcomings,a piecewise strength criterion that considers the grain size effect has been proposed.A part of an ellipse was employed to construct the envelope of the tensive-shear region on the meridian plane,to accurately reproduce the low tensile-compressive strength ratio.Based on the analysis of experimental data,both linear and exponential modification functions that account for grain size effects were integrated into the proposed criterion.The corresponding finite element algorithm has been implemented.The accuracy and applicability of the proposed criterion were validated by comparing with the experimental data. 展开更多
关键词 crystalline rock grain size effect strength criterion tensile-compressive strength ratio finite element algorithm
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Limit equilibrium analysis for rock slope stability using basic Hoek–Brown strength criterion 被引量:7
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作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2154-2163,共10页
Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only sui... Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only suitable for analyzing the rock slope stability using the linear equivalent Mohr–Coulomb(EMC)strength parameters instead of the nonlinear HB strength criterion.Therefore,a new method derived to analyze directly the rock slope stability using the nonlinear HB strength criterion for arbitrary curve slip surface was described in the limit equilibrium framework.The current method was established based on certain assumptions concerning the stresses on the slip surface through amending the initial normal stressσ0 obtained without considering the effect of inter-slice forces,and it can satisfy all static equilibrium conditions of the sliding body,so the current method can obtain the reasonable and strict factor of safety(FOS)solutions.Compared with the results of other methods in some examples,the feasibility of the current method was verified.Meanwhile,the parametric analysis shows that the slope angleβhas an important influence on the difference of the results obtained using the nonlinear HB strength criterion and its linear EMC strength parameters.Forβ≤45°,both of the results are similar,showing the traditional limit equilibrium methods using the linear EMC strength parameters and the current method are all suitable to analyze rock slope stability,but forβ>60°,the differences of both the results are obvious,showing the actual slope stability state can not be reflected in the traditional limit equilibrium methods,and then the current method should be used. 展开更多
关键词 Hoek-Brown strength criterion linear equivalent Mohr-Coulomb strength parameters slope stability limit equilibrium slip surface factor of safety
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