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  • SME-ICGCM
    Rock Mass Classification As An Aid To Estimating The Strength Of Coal Pillars (77026f3a-8230-4eb0-afbc-609f7a2ad471)

    Coal mass strength properties must be estimated to obtain realistic estimates of coal pillar strength. The limitations of existing techniques for approximating these properties are discussed. The coal

    Jan 1, 1992

  • CIM
    Rock Mass Classification for Pre-Excavation Support Planning and at-Face Excavation Performance Assessment

    The rock mass classification systems were developed for different functions, including support selection, excavation method selection and the determination of rock mass engineering properties for exca

    May 1, 2009

  • NIOSH
    Rock Mass Classification In German Hard-Coal Mining: Standards And Application

    By Nikolaos Polysos, Holger Witthaus

    INTRODUCTION The classification system for German coal mining is the result of approximately 100 years of experience in roadway development and longwall mining. It is also based on different resear

    Jan 5, 2007

  • SME
    Rock Mass Classification In LHD Mining At San Manuel, Arizona

    By L. Sandbak

    A geomechanical rock mass classification or RMR is currently being used for the evaluation of an LHD mechanized mining system versus the conventional block caving method. The successes and failures of

    Jan 1, 1988

  • SME
    Rock Mass Classification In Underground Bauxite Mines - Fokida

    By E. Koufetzis

    Rock mass classification systems are core elements of tunneling and empirical mine design worldwide. The Bauxite division of S&B Industrial Minerals S.A. decided to implement a rock mass classificatio

    Jan 1, 2008

  • AUSIMM
    Rock Mass Classification is Only Part of the Answer to Assess Raise Boring

    By J Wallis

    The stability of a raise bore is often assessed using the rock mass classification system published by McCracken and Stacey as a modification of the Q system. Often the assessment is done using a spre

    Jan 1, 2008

  • SME
    Rock Mass Classification System (GSI) Misuses In Problematic Rocks

    By C. Steiakakis

    Over recent years large construction projects have taken place and will be taking place in complex geological environments. In order to reduce costs and increase safety, a detailed geotechnical evalua

    Jan 1, 2005

  • SAIMM
    Rock mass damage and induced passive depressurisation around open pits

    By M. Royle, A. Bloem, R. Uken

    Rock mass damage induced by mining increases the fracture frequency and joint aperture width in the pit walls and rock mass behind open pit mine slopes. The depth and intensity of this mechanical dama

    Sep 1, 2025

  • SAIMM
    Rock mass defect patterns and the Hoek-Brown failure criterion

    By S. Read, G. Cook

    The Hoek-Brown failure criterion is often applied to a wider range of rocks than the isotropic rock masses to which it is strictly applicable. This paper evaluates the patterns of defects in rock mas

    Jan 1, 2003

  • AUSIMM
    Rock Mass Excavatability Assessment for the Proposed Open Pit Mine at Globe-Progress, Near Reefton

    The excavatability of the rock mass in a proposed open pit mine at Globe-Progress has been assessed. The rock mass was initially evaluated by determining variations in seismic velocity and by using th

    Jan 1, 1996

  • CIM
    Rock Mass Grouting For Dams, an Observational Design Approach

    By J. A. Espinosa-Guillen, J. A. Lopez-Molina, S. García, J. A. Valencia-Quintanar

    "The design and implementation of grouting treatments in rock masses are procedures that require continuous adjustment of parameters and criteria to optimize the results. In this proposal we describe

    Jan 1, 2015

  • ISEE
    Rock Mass Identification Prior To Blasting: Reasons And Method

    By Anne Charline Sauvage

    Blast designers and blasters need to know the rock mass influence on blast to increase explosive effi-ciency and to optimize costs, but also to succeed in limiting blast emissions (vibration, overpres

    Jan 1, 2013

  • CIM
    Rock Mass Instability Associated with the Formation of Regional Geological Structures along the Bushveld Complex as Encountered during the Extraction of the UG2 Chromitite Layer at Lonmin PLC

    By M. du Plessis, G. More O’Ferrall, A. Hartzenberg

    "Lonmin Platinum has experienced several cases of large-scale hangingwall instabilities during the extraction of the Upper Group 2 Chromitite Layer (UG2) at a number of the Marikana operations along t

    Jan 1, 2015

  • SME
    Rock Mass Mechanical Behavior Assessment at the Porce III Underground Powerhouse Complex, Colombia

    By Ludger Suarez-Burgoa

    At the Porce III Underground Powerhouse Complex in Colombia, the observational method (Peck, 1969), was used to provide information to an underground wedge and a 2D Finite Element Method numerical mod

    Jan 1, 2008

  • SME
    Rock Mass Properties and Hard Rock TBM Penetration Rate Investigations, Queens Tunnel Complex, NYC Water Tunnel #3, Stage 2

    By Levent Ozdemir, Charles Merguerian

    Between 1996 and 1999, a high-performance Robbins TBM [235-282] excavated a 5 mile long, 23´2? wide, and ~700´ deep tunnel through the subsurface of southwestern Queens. Low penetration rates (~6´/hr

    Jan 1, 2003

  • SME
    Rock Mass Response And Machine Performance In A Full-Face TBM Tunnel In Rochester, NY

    By T. D. Rourke, Fred H. Kulhawy, O&apos

    From mid-1976 to early 1978, a 5.64 m diameter tunnel, 2491 m long, was excavated by a modified Robbins full-face TBM under shallow cover in highly stressed sedimentary rock in Rochester, NY. In-situ

    Jan 1, 1981

  • CIM
    Rock Mass Response to Mining Induced Over-Stresses in a Sublevel Caving Operation Case Study at the Kiruna Mine, Sweden

    By Emmanuel Henry

    The Kiruna Mine, operated by Luossavaara-Kiirunavaara AB (LKAB), is a large-scale sublevel caving operation located in Arctic Sweden. Iron ore is extracted at a rate of 60 000 tpd from a four-kilometr

    May 1, 2001

  • AIME
    Rock Mass Response To Mining Longwall Panel 4N, York Canyon Mine

    By Donald W. Gentry, John F. Abel

    This paper presents some of the results of a rock mechanics instrumentation program designed for, and implemented at, longwall panel 4N at the York Canyon Mine near Raton, New Mexico. The objectiv

    Jan 3, 1978

  • SME
    Rock Mass Response To Mining Longwall Panel 4N, York Canyon Mine (7fd13e90-6106-40aa-b184-7520ddae1741)

    By Donald W. Gentry

    This paper presents some of the results of a rock mechanics in¬strumentation program designed for, and implemented at, longwall panel 4N at the York Canyon Mine near Raton, New Mexico. The objective

    Jan 1, 1977

  • AIME
    Rock Mass Response To Mining Longwall Panel 4N, York Canyon Mine (d86f7ab9-8681-41b5-a80d-1c640fdeb36a)

    By Donald W. Gentry, John F. Abel

    This paper presents some of the results of a rock mechanics instrumentation program designed for, and implemented at. longwall panel 4N at the York Canyon Mine near Raton, New Mexico. The objective

    Jan 1, 1979