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Experience With The Boundary Element Method Of Numerical Modeling As A Tool To Resolve Complex Ground Control ProblemsBy George J. Karabin
The Roof Control Division of the Pittsburgh Safety and Health Technology Center, MS HA, is routinely involved in the evaluation of ground conditions in underground coal mines. Assessing the stability
Jan 1, 1994
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Underground Application Of OptimizationBy S. J. Jung
The goal of this research is to demonstrate how optimization methodology can be coupled with the finite element method for greater stability of underground mine openings. As a result of increasing min
Jan 1, 1993
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SOMA: A New Method to Calculate the Operative Stress Field: Results from the Laurel Mountain Mine, Russell Co., VirginiaBy Craig Byington
The stress-field orientation mapping and analysis (SOMA) technique for determining the operative stress field near mine workings and its relationship to various fracture sets is described using Dicken
Jan 1, 2004
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Optimun Mining Plan for Multiple Seam MiningBy Wen H. Su
Multiple seam mining and its associated problems are very serious in Southern West Virginia where poor planning or lack of knowledge in seam interaction often results in complete loss of coal propert
Jan 1, 1984
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Research, Development, And Use Of Steel-Fiber-Reinforced Concrete Cribbing For Mine Roof SupportBy Dale A. Didcoct
Through the combined efforts of the C. S. Bureau of Mines, the coal industry, and Burrell Construction and Supply Company, New Kensington, PA, a steel fiber reinforced concrete crib block to improve c
Jan 1, 1982
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Ground Control of Longwall Top–Coal Caving Faces within Thick Coal SeamsBy Jinwang Zhang, Zhaohui Wang, Jiachen Wang
"Thick coal seams (seam height larger than 3.5 m) account for a large portion of the proven coal reserves of China, and underground thick coal seam mining provides about 50% of the Chinese annual coal
Jan 1, 2017
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Development Of A Subsidence Database And Determination Of Subsidence ParametersBy Syd S. Peng
A total of 209 cases of subsidence data over longwall panels in 16 US coal seems have been collected and built into a subsidence database. The database is developed under MS Windows environment. It us
Jan 1, 1995
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Spatial Trends In Rock Strength - Can They Be Determined From Coreholes? (51393e91-3e75-4a8d-ac36-e107a993fe35)By Christopher Mark
Mine planning for a new reserve is based on information obtained from exploratory coreholes. A critical component of an exploration program is the geotechnical evaluation. Poor assumptions about roof
Jan 1, 2004
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Gateroad Pillar Extraction Experience at Jim Walter ResourcesBy Gregory Hendon
Jim Walter Resources, Inc. (JWR), has successfully longwall mined for many years at depths ranging from 1200'-2500'. However, full pillar extraction has proven difficult and generally econom
Jan 1, 1998
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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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Roof Movement and Loading for Top-Coal Caving Longwall Mining in Extremely Inclined Thick CoalBy Shengliyang Yang, Jinghu Yang, Jiachen Wang, Xiaomeng Li
"Safe and efficient mining of extremely inclined thick coal seams less than 20m thick is one of the new challenges in China coal industry. In recent years, the extremely inclined thick coal seams have
Jan 1, 2016
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Case Study of the Barro Branco Coal Mine Pillar BurstBy Fernando O. L. Xavier
"The Barro Branco coal mine was located in the southern region of Brazil, in the state of Santa Catarina. In 2002, an incident occurred at the mine, leading to a violent, massive pillar failure, resul
Jan 1, 2017
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Deep Cover Bleeder Entry Performance and Support Loading: A Case StudyBy Tulu B. Ihsan, Mark A. Van Dyke, Ted M. Klemetti
"How well do current modeling procedures calculate the rear abutment extent and loading? Does an improved understanding of the rear abutment extent warrant a change in standing support in bleeder entr
Jan 1, 2017
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Pressure Measurements in the Gob (27227c3c-951c-4108-ba5c-3b6e67d232fb)By H. Maleki
Gob pressure measurements were made in a Western U. S. coal mine as part of a long-term program to evaluate cave progress and to determine the influence of geological discontinuities on caving conditi
Jan 1, 1984
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Merging Coal Mine Geologic Hazard Mapping with Mine Production Rates—Industry ExperienceBy Kevin Andrews, Scott Nelson, Terry Hamrick
"In the process of Geologic Hazard Mapping (GHM) for underground coal mining, geologists evaluate the effects of various geologic and geotechnical conditions to assist with optimization of mine produc
Jan 1, 2018
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Update: Analysis and Case Study of Impact?Resistant Steel Sets for Underground Roof Fall RehabilitationBy Dakota Faulkner
Unexpected roof falls often occur in the entries or intersections of active mining sections in underground mines. For large roof falls (greater than 20 ft in height), it becomes dangerous and impract
Jan 1, 2014
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Application Of A Static And Geophysical Monitoring System For Detection Of Stability ProblemsBy Maleki. Hamid
The U.S. Bureau of Mines implemented an inte¬grated static and geophysical monitoring program in a southern Wyoming mine to study changes in seismic wave propagation properties in roof strata. The pur
Jan 1, 1993
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A Case Study Of A Deformation Mechanism Around A Two-Entry Gate-Road System Involving Probable Time-Dependent BehaviorBy M. K. Larson
The U.S. Bureau of Mines and Cyprus Shoshone Coal Corp. conducted a study of deformation mechanisms around a longwall gate-road system in an underground coal mine. Of particular interest was roof defo
Jan 1, 1995
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Prediction Of Rock Cutting Performance Using Fracture Mechanics Principles - A Review (0b1a12ed-9606-4d46-b68d-eea006d52e76)By Gexin Sun
This paper overviews the recent research progress in predicting cutting performance using fracture mechanics principles. It is emphasised that rock fragmentation due to cutting is mainly a process of
Jan 1, 1992
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Massive Pillar Failure--Two Case StudiesBy David H. Tang
Similar massive pillar failures were observed in two underground coal mines with different configurations of mine workings and overburden depths. Finite element models were used to analyze the causes
Jan 1, 1984