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Rock Mass Behaviour Under Seismic Loading In A Deep Mine Environment: Implications For Stope SupportBy A. Cichowicz
In this study, techniques used to design earthquake-resistant structures are applied to the deep-level mining environment. Earthquake engineers seek to identify the cause of potentially damaging reson
Jan 1, 2000
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Rock Mass Characterisation and Analysis for Excavation Design – A Discrete Fracture Network ApproachBy F M. Weir, M Fowler
The design of excavations in rock must, implicitly or explicitly take into consideration the influence of small- and large-scale geological structures. For most sites the complexity of a fractured roc
Nov 5, 2014
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Rock Mass Characterisation and Stope DesignBy Karina Forster
Rock mass characterisation is a critical component of effective stope design. Unexpected excessive stope dilution or uneconomic stope sizes can be the result of rock mass characterisation that is not
May 1, 2006
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Rock Mass Characterization For Designing Underground Leaching StopesBy D. Boreck
The Bureau of Mines is conducting research on the feasibility of incorporating in situ stope leaching into active underground metal mines. Stope leaching, a modified in situ leaching technique, prop
Jan 1, 1991
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Rock Mass Characterization For Excavations In Mining And Civil EngineeringBy Nick Barton
When the Q-system was launched in 1974, the name referred to rock mass classification, with focus on tunnel and cavern support selection. Besides empirical design of support, the Q-value, or its norma
Jan 5, 2007
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Rock Mass Characterization for the WSSC Bi-County Water TunnelBy Paul Headland
The Washington Suburban Sanitary Commission (WSSC) has recently completed design for the Bi-County Water Tunnel Project. The project will include a 10-foot diameter, 5.3-mile long hard rock tunnel loc
Jan 1, 2008
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Rock Mass Characterization Of Primary Copper Ore For Caving At The El Teniente Mine, ChileBy Ernesto Villaescusa, Andres Brzovic
Rock masses of the primary copper ore at the El Teniente Mine are very competent and massive. The rock mass contains almost no open discontinuities. Nevertheless, there is a high frequency network of
Jan 5, 2007
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Rock Mass Classification Applied to Subsidence Over High Extraction Coal MinesBy J. A. Siekmeier
The thickness of the laminated beam modeled in this study is based on bridging potential and TDR measurements. The laminated beam stiffness is based on the effective stiffness of an equivalent transf
Jan 1, 1986
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Rock Mass Classification as an Aid to Estimating the Strength of Coal PillarsBy Tyler DB, Thin LGT
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 c
Jan 1, 1992
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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
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Rock Mass Classification for Pre-Excavation Support Planning and at-Face Excavation Performance AssessmentThe 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
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Rock Mass Classification In German Hard-Coal Mining: Standards And ApplicationBy 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
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Rock Mass Classification In LHD Mining At San Manuel, ArizonaBy 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
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Rock Mass Classification is Only Part of the Answer to Assess Raise BoringBy 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
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Rock mass defect patterns and the Hoek-Brown failure criterionBy 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
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Rock Mass Excavatability Assessment for the Proposed Open Pit Mine at Globe-Progress, Near ReeftonThe 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
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Rock Mass Mechanical Behavior Assessment at the Porce III Underground Powerhouse Complex, ColombiaBy 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
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Rock Mass Properties and Hard Rock TBM Penetration Rate Investigations, Queens Tunnel Complex, NYC Water Tunnel #3, Stage 2By 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
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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
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Rock Mechanics - A Comparison of Explosives by Cratering and Other MethodsBy W. I. Duvall, L. D. Sadwin
Three explosives with different detonation characteristics were tested by studying their cratering ability in a granite-gneiss. The strain wave generating characteristics of these explosives were also
Jan 1, 1965