期刊文献+
共找到11篇文章
< 1 >
每页显示 20 50 100
Classification and assessment of rock mass parameters in Choghart iron mine using P-wave velocity 被引量:9
1
作者 Mohammadreza Hemmati Nourani Mohsen Taheri Moghadder Mohsen Safari 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第2期318-328,共11页
Engineering rock mass classification,based on empirical relations between rock mass parameters and engineering applications,is commonly used in rock engineering and forms the basis for designing rock structures.The ba... Engineering rock mass classification,based on empirical relations between rock mass parameters and engineering applications,is commonly used in rock engineering and forms the basis for designing rock structures.The basic data required may be obtained from visual observation and laboratory or field tests.However,owing to the discontinuous and variable nature of rock masses,it is difficult for rock engineers to directly obtain the specific design parameters needed.As an alternative,the use of geophysical methods in geomechanics such as seismography may largely address this problem.In this study,25 seismic profiles with the total length of 543 m have been scanned to determine the geomechanical properties of the rock mass in blocks Ⅰ,Ⅲ and Ⅳ-2 of the Choghart iron mine.Moreover,rock joint measurements and sampling for laboratory tests were conducted.The results show that the rock mass rating(RMR) and Q values have a close relation with P-wave velocity parameters,including P-wave velocity in field(V;).P-wave velocity in the laboratory(V;) and the ratio of V;V;(i.e.K;= V;/V;.However,Q value,totally,has greater correlation coefficient and less error than the RMR,In addition,rock mass parameters including rock quality designation(RQD),uniaxial compressive strength(UCS),joint roughness coefficient(JRC) and Schmidt number(RN) show close relationship with P-wave velocity.An equation based on these parameters was obtained to estimate the P-wave velocity in the rock mass with a correlation coefficient of 91%.The velocities in two orthogonal directions and the results of joint study show that the wave velocity anisotropy in rock mass may be used as an efficient tool to assess the strong and weak directions in rock mass. 展开更多
关键词 Rock mass classification P-wave velocity Q system Rock mass rating(rmr) Geophysical methods
下载PDF
Modification of rock mass rating system:Interbedding of strong and weak rock layers 被引量:6
2
作者 Mohammad Mohammadi Mohammad Farouq Hossaini 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第6期1165-1170,共6页
Rock mass classification systems are the very important part for underground projects and rock mass rating(RMR) is one of the most commonly applied classification systems in numerous civil and mining projects. The typ... Rock mass classification systems are the very important part for underground projects and rock mass rating(RMR) is one of the most commonly applied classification systems in numerous civil and mining projects. The type of rock mass consisting of an interbedding of strong and weak layers poses difficulties and uncertainties for determining the RMR. For this, the present paper uses the concept of rock bolt supporting factor(RSF) for modification of RMR system to be used in such rock mass types. The proposed method also demonstrates the importance of rock bolting practice in such rock masses. The geological parameters of the Shemshak Formation of the Alborz Tunnel in Iran are used as case examples for development of the theoretical approach. 展开更多
关键词 Rock mass rating(rmr) Strong and weak rock layers Interbedding Rock bolt supporting factor(RSF) Alborz tunnel
下载PDF
Geotechnical investigations and remediation design for failure of tunnel portal section: a case study in northern Turkey 被引量:7
3
作者 Ayberk KAYA Kadir KARAMAN Fikri BULUT 《Journal of Mountain Science》 SCIE CSCD 2017年第6期1140-1160,共21页
Mass movements are very common problems in the eastern Black Sea region of Turkey due to its climate conditions, geological, and geomorphological characteristics. High slope angle, weathering, dense rainfalls, and ant... Mass movements are very common problems in the eastern Black Sea region of Turkey due to its climate conditions, geological, and geomorphological characteristics. High slope angle, weathering, dense rainfalls, and anthropogenic impacts are generally reported as the most important triggering factors in the region. Following the portal slope excavations in the entrance section of Cankurtaran tunnel, located in the region, where the highly weathered andesitic tuff crops out, a circular toe failure occurred. The main target of the present study is to investigate the causes and occurrence mechanism of this failure and to determine the feasible remedial measures against it using finite element method(FEM) in four stages. These stages are slope stability analyses for pre-and postexcavation cases, and remediation design assessments for slope and tunnel. The results of the FEM-SSR analyses indicated that the insufficient initial support design and weathering of the andesitic tuffs are the main factors that caused the portal failure. After installing a rock retaining wall with jet grout columns and reinforced slope benching applications, the factor of safety increased from 0.83 to 2.80. In addition toslope stability evaluation, the Rock Mass Rating(RMR), Rock Mass Quality(Q) and New Austrian Tunneling Method(NATM) systems were also utilized as empirical methods to characterize the tunnel ground and to determine the tunnel support design. The performance of the suggested empirical support design, induced stress distributions and deformations were analyzed by means of numerical modelling. Finally, it was concluded that the recommended stabilization technique was essential for the dynamic long-term stability and prevents the effects of failure. Additionally, the FEM method gives useful and reasonably reliable results in evaluating the stability of cut slopes and tunnels excavated both in continuous and discontinuous rock masses. 展开更多
关键词 Portal failure Stability analysis Finite element method Tunnel support design Remedial measures Rock Mass ratingrmr Rock Mass Quality(Q) New Austrian Tunneling Method(NATM)
下载PDF
Slope stability analysis of Balia Nala landslide, Kumaun Lesser Himalaya, Nainital, Uttarakhand, India 被引量:3
4
作者 Mohit Kumar Shruti Rana +1 位作者 Pitamber Dutt Pant Ramesh Chandra Patel 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2017年第1期150-158,共9页
Balia Nala is the outlet of the Nainital lake, flowing towards southeast direction. Presence of Nainital habitation at its right bank has high socio-economic importance. This study presents the stability analysis of a... Balia Nala is the outlet of the Nainital lake, flowing towards southeast direction. Presence of Nainital habitation at its right bank has high socio-economic importance. This study presents the stability analysis of a ravine/valley along Balia Nala. Variegated slates(lower Krol and upper Blaini formations) are the main rock types, wherever the outcrop does exist and rest of the area is covered by slope wash and river borne materials. Three sets of joints are presented in the area, but 4 sets of joints also exist at some locations. Nainital lake fault intersected by Manora fault from southwest direction passes through eastern side of the study area, and some small faults, which are sub-branches of Nainital lake fault, are observed(with 10 m offset) and promote the landslide in the area. This study shows that different kinds of discontinuities(joints, faults and shear zones) and rapid down cutting by the stream due to neotectonic activity affect the stability of the slope. The fragile lithology and deep V-shaped valley further accelerate the mass movement in the study area. In addition, rock mass rating(RMR), factor of safety(FOS) and graphical analysis of the joints indicate the study area as landslide-prone zone. This study will be helpful in not only reducing the risk on life of people, but also in assisting the ongoing civil work in the study area. 展开更多
关键词 Rock mass rating(rmr) Factor of safety(FOS) Balia Nala landslide Slope stability analysis
下载PDF
Hill slope instability of Nainital City,Kumaun Lesser Himalaya,Uttarakhand,India 被引量:1
5
作者 Nirvan Sah Mohit Kumar +1 位作者 Rajeev Upadhyay Som Dutt 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2018年第2期280-289,共10页
Nainital City of Kumaun Lesser Himalaya is prone to mass wasting processes during monsoon season,which mischievously triggers the hill slope instability in this region. Slate, dolomitic limestone, silty sandstone and ... Nainital City of Kumaun Lesser Himalaya is prone to mass wasting processes during monsoon season,which mischievously triggers the hill slope instability in this region. Slate, dolomitic limestone, silty sandstone and rhythmite of the Krol Formation are the main rock types. The present study focuses on the investigation of slope stability in the region in terms of potential seismicity and landslide. Geological and geotechnical mapping indicates that the major portion of the area is characterized by slope wash materials and buildings. The combination of 3-4 joint sets with one random joint is the main structure at outcrops.The major geological structures of this area are Nainital lake fault passing from the center of the lake, Main Boundary Thrust at SW, and Khuriya Fault passing from the SE direction of Nainital City. This work finds that different types of discontinuities(e.g. joints and faults), overburden due to unplanned civil structures,and neotectonic activity in the vicinity of this ara affect the stability of the city. The slate forms the base of the city, dipping slightly towards the lake side along the NW direction, thus accelerating the instability of this area. Rock mass rating(RMR), slope mass rating, factor of safety(FOS) and graphical analysis of the discontinuity for slope kinematics indicate that the study area is a landslide-prone zone. This study can facilitate reducing the risk of human life, and contribute to the ongoing construction works in the area. 展开更多
关键词 Hill slope instability Himalaya region Wedge failure Rock mass rating(rmr) Factor of safety(FOS)
下载PDF
Performance analysis of empirical models for predicting rock mass deformation modulus using regression and Bayesian methods 被引量:1
6
作者 Adeyemi Emman Aladejare Musa Adebayo Idris 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2020年第6期1263-1271,共9页
Deformation modulus of rock mass is one of the input parameters to most rock engineering designs and constructions.The field tests for determination of deformation modulus are cumbersome,expensive and time-consuming.T... Deformation modulus of rock mass is one of the input parameters to most rock engineering designs and constructions.The field tests for determination of deformation modulus are cumbersome,expensive and time-consuming.This has prompted the development of various regression equations to estimate deformation modulus from results of rock mass classifications,with rock mass rating(RMR)being one of the frequently used classifications.The regression equations are of different types ranging from linear to nonlinear functions like power and exponential.Bayesian method has recently been developed to incorporate regression equations into a Bayesian framework to provide better estimates of geotechnical properties.The question of whether Bayesian method improves the estimation of geotechnical properties in all circumstances remains open.Therefore,a comparative study was conducted to assess the performances of regression and Bayesian methods when they are used to characterize deformation modulus from the same set of RMR data obtained from two project sites.The study also investigated the performance of different types of regression equations in estimation of the deformation modulus.Statistics,probability distributions and prediction indicators were used to assess the performances of regression and Bayesian methods and different types of regression equations.It was found that power and exponential types of regression equations provide a better estimate than linear regression equations.In addition,it was discovered that the ability of the Bayesian method to provide better estimates of deformation modulus than regression method depends on the quality and quantity of input data as well as the type of the regression equation. 展开更多
关键词 Deformation modulus Rock mass Regression equation Bayesian method Performance analysis Rock mass rating(rmr)
下载PDF
深部岩体强度准则 被引量:51
7
作者 周小平 钱七虎 杨海清 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2008年第1期117-123,共7页
提出一种新的适用于深部岩体的强度准则,该准则考虑深部岩体的拉伸破坏,同时考虑深部岩体的剪胀和剪缩破坏,其破坏面可以是闭合的也可以是张开的,而且与RMR岩体地质力学分类指标建立联系。深部岩体准则中的参数均有明确的物理意义,可以... 提出一种新的适用于深部岩体的强度准则,该准则考虑深部岩体的拉伸破坏,同时考虑深部岩体的剪胀和剪缩破坏,其破坏面可以是闭合的也可以是张开的,而且与RMR岩体地质力学分类指标建立联系。深部岩体准则中的参数均有明确的物理意义,可以很容易通过实验确定或通过RMR岩体地质力学分类确定。该准则不仅可考虑所有应力分量对材料破坏的影响,而且可反映深部岩体的受力特点。最后,将新准则与实验结果进行比较,从而验证了新准则的有效性。 展开更多
关键词 岩石力学 深部岩体 非线性强度准则 岩体地质力学分类
下载PDF
基于RMR岩体分级系统的TBM掘进性能参数预测 被引量:22
8
作者 王健 王瑞睿 +2 位作者 张欣欣 刘海东 庞永昊 《隧道建设》 北大核心 2017年第6期700-707,共8页
为解决由于地质条件原因造成TBM掘进效率低下的问题,基于吉林引松供水工程建立的TBM数据库,提出应用RMR岩体分级系统对TBM的掘进性能参数进行预测。通过回归分析的方法分别建立了RMR与TBM性能预测参数掘进速率(PR)、施工进度(AR)、利用... 为解决由于地质条件原因造成TBM掘进效率低下的问题,基于吉林引松供水工程建立的TBM数据库,提出应用RMR岩体分级系统对TBM的掘进性能参数进行预测。通过回归分析的方法分别建立了RMR与TBM性能预测参数掘进速率(PR)、施工进度(AR)、利用率(U)以及贯入度指数(FPI)的经验公式。研究结果表明:RMR与PR、AR、U均呈现二次相关关系,RMR与FPI为线性关系,且相关系数均大于0.7;当RMR=50~70时,岩体具有较好的可掘性;当岩体条件较差(RMR<30~40)或者岩体条件极好(RMR>70~80)时,岩体的可掘性均较差;吉林引松工程TBM掘进的平均利用率为22.36%,与地质条件相关的停工时间约占总工期的25.97%。 展开更多
关键词 TBM 吉林引松供水工程 隧洞 rmr 掘进性能参数 掘进速度 施工进度 利用率
下载PDF
基于RMR的模糊AHP法在岩体分级中的应用 被引量:6
9
作者 李华 焦彦杰 《工程地质学报》 CSCD 北大核心 2011年第5期648-655,共8页
传统的RMR法采用固定评估因素、固定评分方式进行岩体分级,其评分过程中存在着许多不确定性和主观性,在地质条件复杂的情况下岩体分级效果差。为了改变RMR法存在的不足,本文在参考RMR法的基础之上,提出了将AHP法应用于岩体分级的方案,... 传统的RMR法采用固定评估因素、固定评分方式进行岩体分级,其评分过程中存在着许多不确定性和主观性,在地质条件复杂的情况下岩体分级效果差。为了改变RMR法存在的不足,本文在参考RMR法的基础之上,提出了将AHP法应用于岩体分级的方案,给出了模型计算流程。将岩体分级看作一个多属性决策问题,根据实际情况可随机加入或减少影响岩体质量的评估因素,集合专家的意见重新确定各评估因素的权重值、建立相应的评分准则,然后通过迭代法计算岩体质量总评分再进行岩体分级。针对AHP法无法解决的模糊问题,在模型计算流程中引入了模糊理论进行相关处理,并编程实现该流程。最后将此方案应用于大湾隧道进行岩体分级,分级结果与RMR法的结果进行对比分析,结果显示模糊AHP法的岩体分级结果与实际情况更加吻合。 展开更多
关键词 rmr AHP法 岩体分级 模糊理论
下载PDF
Assessment of Rock Mass Quality and Support Estimation along Headrace Tunnel of a Small Hydropower in District Mansehra, Khyber Pakhtunkhwa, Pakistan
10
作者 Mian Sohail Akram Muhammad Zeeshan +1 位作者 Muhammad Haroon Kamran Mirza 《Open Journal of Geology》 2019年第11期809-828,共20页
The main purpose of this study is to classify the rock mass quality by using rock mass quality (Q) and Rock Mass Rating (RMR) systems along headrace tunnel of small hydropower in Mansehra District, Khyber Pakhtunkhwa.... The main purpose of this study is to classify the rock mass quality by using rock mass quality (Q) and Rock Mass Rating (RMR) systems along headrace tunnel of small hydropower in Mansehra District, Khyber Pakhtunkhwa. Geological field work was carried out to determine the orientation, spacing, aperture, roughness and alteration of discontinuities of rock mass. The quality of rock mass along the tunnel route is classified as good to very poor quality by Q system, while very good to very poor by RMR classification system. The relatively good rock conditions are acquired via RMR values that are attributed to ground water conditions, joint spacing, RQD and favorable orientation of discontinuities with respect to the tunnel drive. The petrographic studies revealed that study area is mainly comprised of five major geological rock units namely quartz mica schist (QMS), garnet mica schist (GMS), garnet bearing quartz mica schist (G-QMS), calcareous schist (CS), marble (M). The collected samples of quartz mica schist, marble and garnet bearing quartz mica schist are fine to medium grained, compact and are cross cut by few discontinuities having greater spacing. Therefore, these rocks have greater average RQD, Q values, RMR ratings as compared to garnet mica schist and calcareous schist. 展开更多
关键词 TUNNEL PETROGRAPHY Rock Mass rating (rmr) Tunneling Quality Index (Q System) SUPPORT ESTIMATION
下载PDF
岩体质量及变形模量确定方法的研究 被引量:1
11
作者 王亮清 唐辉明 张宜虎 《化工矿物与加工》 CAS 北大核心 2003年第8期24-26,共3页
在分别采用岩芯RQD与体积节理数法计算RQD的基础上 ,用RMR法对贵阳市鱼简河水库坝基岩体进行质量评价和参数估算 ,结果表明 ,两种方法计算所得RQD及变形模量值差别较大 ,作者建议在用RMR法进行岩体质量评价及参数估算时 ,RQD的计算宜采... 在分别采用岩芯RQD与体积节理数法计算RQD的基础上 ,用RMR法对贵阳市鱼简河水库坝基岩体进行质量评价和参数估算 ,结果表明 ,两种方法计算所得RQD及变形模量值差别较大 ,作者建议在用RMR法进行岩体质量评价及参数估算时 ,RQD的计算宜采用体积节理数法。 展开更多
关键词 变形模量 RQD rmr 岩芯RQD 体积节理数法 rmr
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部