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A Novel and Effective Method to Develop Tension in a Roof BoltBy Phillip E. Gramlich
Through extensive practical experience and multiple studies, tensioned roof control systems have proven beneficial in difficult mining conditions. Due to increased mining of less desirable seams, ten
Jan 1, 2014
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Mine Roof Geology Information System (MRGIS)By Syd Peng
It is necessary to fully understand roof geological features in order to design a proper roof support system for underground coal mines. These geological features include: rock type, rock strength. ro
Jan 1, 2003
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Recent Experience Using Telltale Roof Monitoring SystemsBy David Bigby, Tim Ross, David Conover
"Extensive arrays of telltale roof monitoring instruments were recently installed in a Mexican copper mine and a large underground mined storage facility in the eastern U.S. The data were used to eval
Jan 1, 2010
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Strata Control Advances At Jim Walter Resources, Mining DivisionBy Eddie Martin
Jim Walter Resources, Mining Division, employs the retreat longwall mining system as the primary method of coal production. The strata control aspects of developing and maintaining roadways for retrea
Jan 1, 1988
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Stooping Low Safety Factor Pillars At Goedehoop CollieryBy Gift Makusha
The Witbank Coalfield in South Africa contains up to five economically viable coal seams. These seams have been mined continuously for over 100 years and the reserve in now becoming depleted. The norm
Jan 1, 2003
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Laboratory Studies on Creep Behavior of Grouted Tensioned Rebar in Weak StrataBy Joseph Hirschi, Naga S. Y. Tirumalaraju, Aditya Mishra, Anthony (Sam) J. S. Spearing
"Primary roof support in underground coal mines in the USA consists mostly of fully grouted passive rebar or grouted (partially or fully) tensioned rebar. Research conducted at two room-and pillar coa
Jan 1, 2015
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Recent Developments on Surface Ground Strain Calculations Due to Underground Mining in AppalachiaBy Zach G. Agioutantis
The prediction of ground movements due to underground mining using the influence function method is a mature technology, widely used by researchers and planning engineers around the world. Surface str
Jan 1, 2013
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Validation of Overburden Failure Zone in Complex Extra Thick Coal Seam by EH?4 Magnetotelluric MethodBy Hai Rong
EH-4 Electrical conductivity imaging system has been playing an important role in prospecting, looking for water resource, and determining coal mine gob boundary by virtue of its significant advantage
Jan 1, 2014
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Understanding the Connection between Blasting and Highwall StabilityBy R. Quentin Eades, Kyle Perry
"Surface mines continue to implement highwalls for several reasons, such as increasing recovery, improving margins, and justifying higher stripping ratios. Highwall stability is a complex issue that i
Jan 1, 2018
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Ten Factors about Standing Supports That Might Surprise YouBy Timothy Batchler
"Standing roof supports help to provide a stable working environment in coal mine gateroads. NIOSH participates in the development of these support systems by conducting full-scale tests in their Mine
Jan 1, 2017
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A Practical and Efficient Steel King Beam Structure Design Methodology at Slope Bottom IntersectionsBy Stankusm John C., Xiaoting Li
"Quantitatively identifying the load on a steel king beam set is a complicated issue in designing the king beam structure at the slope bottom area. From an engineering perspective, understanding the n
Jan 1, 2018
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Review and Estimation of the Hydraulic Conductivity of the Overburden above Longwall Panels. Experience from AustraliaBy Winton Gale
"The aim of this paper is to summarise the results and conclusions of Australian Coal Association Research Project (ACARP) Report Cl3013 which relate to water inflows into a mine which occur through t
Jan 1, 2010
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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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Systematic Principles of Surrounding Rock Control in Longwall Mining within Thick Coal SeamsBy Zhaohui Wang, Jiachen Wang
"Effective surrounding rock control is a prerequisite for realizing safe mining in underground longwall faces. In the past three decades, longwall top-coal caving mining (LTCC) and single pass large h
Jan 1, 2018
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Evaluation of the Impact of Standing Support on Ground Behavior in Longwall Tailgates (8a8cef19-7d7c-417d-83e0-31858c1152c5)By Thomas Barczak
Longwall mines typically use some form of standing support for secondary roof support in longwall tailgate entries. Although there have been several new support products developed for this application
Jan 1, 2005
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Rehabilitation of Underground Surge Bunker Following Massive Rib Wall FailureBy Rob Robinson
Following a massive rib wall failure along the reclaim belt of the large underground surge bunker at CONSOL?s Bailey Mine, a multifaceted, cleanup and rehabilitation effort was initiated to rapidly st
Jan 1, 2007
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Preventing Roof Fall Accidents - An Operation's ApproachBy Joe Zelanko
In order to prevent roof fall accidents and injuries, U.S. underground coal mine operators must develop and implement effective roof control strategies. Various tools are available to assist engineers
Jan 1, 2011
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Coal Mine Seismicity And Bumps: Historical Case Studies And Current Field ActivityBy John L. Ellenberger
The National Institute for Occupational Safety and Health (NIOSH) has continued the research role of the former U.S. Bureau of Mines to develop techniques that will reduce the hazards in the mining wo
Jan 1, 2000
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Topography and Coal Seam Initial Stress Estimation: a Sensitivity StudyBy Jeffrey K. Whyatt
Estimation of the initial vertical stress carried in a coal seam is an important first step in virtually all methods of evaluating the required size of pillars in coal mines. Such estimates are a triv
Jan 1, 2011
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An Analysis of Rock Failure Around a Deep Longwall Using MicroseismicsBy Keith Heasley
In this paper, a state-of-the-art, three-dimensional, full waveform, microseismic system was used to analyze the rock failure around a deep (> 750 in (2500 ft) of cover) bump-prone longwall panel. The
Jan 1, 2001