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Problems in "Void" Detection in Coal Mine Water HazardsBy Francis Kendorski
One of the most dangerous events in underground coal mining is unexpectedly encountering water inrushes from undetected abandoned mines in the same seam. The surest and most confident method is probe
Jan 1, 2004
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Selection of Tunnel Support System by Using Multi Criteria Decision Making ToolsBy Kazem Orace, Navid Hosseini, Mehran Gholinejad
"Selection of the optimum support system for underground openings such as tunnels is a complex process. In this paper a new approach, based on a combination of the Analytical Hierarchy Process (AHP) t
Jan 1, 2010
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Entry Design For Optimum Stability In A Multi-Seam EnvironmentBy Mohummad Akram
Statistical analysis of multi-seam mining case studies demonstrated that geologic structure and lithological type and sequencing were predominant factors in entry failures. Finite element analysis was
Jan 1, 1993
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Recent Innovations for Slope DevelopmentBy Tim Burgess
Patton Mining, LLC and J.H. Fletcher Company recently collaborated and mechanized the sometimes hazardous, and always labor intensive, process of installing standing steel supports during the construc
Jan 1, 2011
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Radon Detection of Mining–Induced Fractures in Overlying Strata of Shallow Coal Seams in ChinaBy Dongsheng Zhang, Xufeng Wang, Wei Zhang, Gangwei Fan
"Large-scale longwall mining of shallow coal seams could cause mining-induced fractures to communicate with the surface immediately in Northwest China, leading to a series of mine safety and environme
Jan 1, 2015
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Appropriate Mining System for Residual Coal Around End?slopes in Chinese Surface Coal MinesBy Takashi Sasaoka
A great deal of coal will be left under the final end-walls in Chinese surface coal mines because of lower slope angle in shoveltruck mining systems and larger mining depths. In traditional surface mi
Jan 1, 2013
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Horizontal Stress Control In Underground Coal Mines (1dbd7295-90f8-4003-a003-9120dc19934c)By S. M. Matthews
The magnitude and orientation of the in situ stressfield has been determined as a key factor in controlling the stability of openings for both coal mine development and extraction. Monitoring of roadw
Jan 1, 1992
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Current Trends In Roof Truss HardwareBy C. P. Mangelsdorf
The success of the Birmingham roof truss (Figure 1) in supporting some difficult roof conditions, particularly in the Illinois coal basin, has given impetus to the development of a number of alternate
Jan 1, 1982
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The Design and Management of Wide Roadways in Australian Coal MinesBy Rob Thomas
"In Australia, a wide roadway is commonly defined as any roadway that is driven to a width greater than 5.5 m (18 ft). These roadways are typically required to enable the installation of longwall equi
Jan 1, 2010
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Development of the 3D Numerical Modeling of Roof Bolts for Studying the Bolt/Rock InteractionBy WenFeng Li
A 3D roof bolt model with the consideration of rebar, resin, bearing plate, and resin/rock interface was developed for studying the bolt/rock interactions of the tensioned and fully-grouted resin bolt
Jan 1, 2014
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Investigation of Pillar Loading Considerations in Determination of Pillar Stability Factors for Longwall Gateroad DesignBy Heather E. Lawson
Recent field data providing measured pillar loading from a deep western mine revealed that an increased load transfer distance existed compared to expected values (Larson et al., 2012). Additionally,
Jan 1, 2013
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Laboratory Investigation of Confinement-Dependent Mechanical Behavior of a Utah CoalBy Bo-Hyun Kim, Steve Berry, Mark K. Larson
"When coal pillar bursts occur, they involve the sudden expulsion of coal and rock into the mine opening. These events occur when relatively high stresses in a coal pillar, which serve as support in u
Jan 1, 2018
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Designing Shotcrete As Primary Support in TunnelsBy Behdeen Oraee-Mirzamani
Since the advent of New Austrian Tunneling Method (NATM), shotcrete as a primary means of support in tunnels has been widely applied. It?s most important features are durability, speed of application
Jan 1, 2011
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Use Of Polymer Grids For Longwall Shield RecoveryBy Brian E. Travis
The recent development of polymer grids for the underground coal mining industry has created new alternatives for supplemental ground control practices. The grids utilize strong, lightweight polymers
Jan 1, 1990
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An Area Calculation of the ARBS Support IntensityBy Ihsan B. Tulu, Keith A. Heasley, Aanand Nandula
"The objective of this paper is to present the development of a software tool that will assist in an area calculation of the Analysis of Roof Bolting Systems (ARBS) support intensity while incorporati
Jan 1, 2018
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Hydraulic Tensioning Of A Birmingham Roof TrussBy C. W. Bollier
In recent years, Peabody Coal Company has enjoyed a great amount of success using roof trussing as a secondary support system. Since 1975, over 180,000 trusses have been installed in 12 different Peab
Jan 1, 1982
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Mechanism and Prediction of Ground Surface Subsidence Due to Multiple-Seam Longwall MiningBy Gang Ren, Behrooz Ghabraie
"Observational data suggest that the ground surface subsidence profile from multiple-seam longwall mining is rather different from that of single seam. Despite the increase of coal production from mul
Jan 1, 2016
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The Evolution of Pre-Driven Recovery Roadways at Crinum MineBy Adam Mackenzie, Dan Payne, Yass-Marie Rutty
"Historically, the Crinum mine has experienced significant falls of ground when longwall production slowed to prepare for recovery in weak roof areas. These conditions continue through the recovery pr
Jan 1, 2016
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Investigating the Contributing Factors to Rib Fatalities Through Historical AnalysisBy Tristan H. Jones
Rib-related accidents in underground coal mines continue to cause injuries and take lives at a rate of 1.3 fatalities per year for the last 17 years. Prevention of these accidents cannot simply be a m
Jan 1, 2014
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An Assessment of Coal Pillar System Stability Criteria Based on a Mechanistic Evaluation of the Interaction between Coal Pillars and the OverburdenBy Guy Reed, Russell Frith, Kent Mctyer
"Coal pillar design has historically been based on assigning a design factor of safety (FoS) or stability factor (SF) to coal pillars according to their estimated strength and the assumed overburden l
Jan 1, 2016