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Ductile Shotcrete Linings for Mining in “Squeezing Ground Conditions”
By Thomas Fiest, Helmut Wannenmacher, Wulf Schubert, Manuel Entfellner
Mining and tunneling in so-called “squeezing ground conditions” at high in-situ stress can result in substantial and enduring ground deformations. The magnitude of deformations is closely tied to the
Jun 25, 2024
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Analysis of Rib Bolt Load and Its Impact on Stabilizing Coal Pillar Ribs Using Numerical Simulations
By Yuting Xue, Khaled Mohamed
Rib control is a critical component of underground coal mining operations, and comprehensive rib support design is essential for ensuring the safety of miners. However, there is currently no standardi
Jun 25, 2024
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Underground Coal and Stone Mining near Gas or Oil Wells
By Lon Santis, Gregory M. Rumbaugh, Christopher Mark
This paper examines the relevant theory, experience, and past practices relating to development mining near gas or oil wells. It addresses setback distance for both coal and stone room-and-pillar mini
Jun 25, 2024
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Ground Support Optimization Using a Structured Strata Management Process in Wide Set-up Room Roadways at West Elk Mine
By Bob Munz, Ry Stone
To facilitate the installation of the longwall equipment for each extraction panel, West Elk mine develops set-up room roadways that are between 26.5 and 30.5 feet wide. Historically at the mine, the
Jun 25, 2024
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Prediction of Ground Movements for Inclined Seams
By Ernesto Maldonado, Jesus Romero Benitez, Zach Agioutantis
Numerous researchers worldwide have investigated the prediction of ground movements due to underground coal mining utilizing different analytical, empirical, and numerical models. These studies have
Jun 25, 2024
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Coal Environmental Protection Mining Technology System and Engineering Practice
By Quansheng Li
Large-scale coal mining will cause environmental problems such as aquifer damage, land excavation and occupation, soil erosion, vegetation damage, and regional landscape damage. The existing coal mine
Jun 25, 2024
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From Points to Lines to Surfaces: A Novel Approach to Reconstructing Field-Scale Three-Dimensional Shale Roof Models Using Image Processing
By Yuting Xue, Xin Li, Ihsan Berk Tulu, Gaobo Zhao, Deniz Tuncay, Mindi Ruan
Most coal mine roofs in the Appalachian region consist of laminated shale, which is prone to brittle failure. Accurate modeling of shale roofs is vital for studying cutter failures of these shale roo
Jun 25, 2024
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Case Study of Path Dependent Calibration and Pillar Stability Analysis Using the LaModel Program
By Morgan M. Sears
The LaModel program is widely used to calculate stresses and displacements on thin tabular deposits, particularly when multiple seams or complex mining geometry is encountered. The program itself allo
Jun 25, 2024
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Lessons from Recent Pillar “Squeezes” in US Coal Mines
By Christopher Mark
Area wide pillar failures, or “squeezes,” were once fairly common in underground coal mines. While rare today, they do occur. This paper describes seven case histories that were investigated by MSHA T
Jun 25, 2024
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Investigating the Influence of Lateral Loading on the Vertical Capacity of Coal Mine Standing Supports
By Timothy Batchler, Khaled Mohamed, Morgan Sears
The National Institute for Occupational Safety and Health (NIOSH) initiated a testing program to assess the effects of lateral loading on various standing supports used in underground coal mines. Thi
Jun 25, 2024
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Seismic Potential Forecasting in a Deep Longwall Mine
By J. Fuller, J. Beale, Q. Justice, Z. Agioutantis, S. Hicks, Z. Khademian
Seismic events can be induced by mining due to unstable rock failures or slips along geologic structures leading to the sudden release of strain energy stored within the rock near underground openings
Jun 25, 2024
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Applications of LiDAR in Underground Mines
By Emily Muto
LiDAR technology has made it possible to map large areas of underground mines accurately and rapidly in three dimensions. MSHA Technical Support began implementing LiDAR technology in conjunction with
Jun 25, 2024
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Calibration of LaModel In-Seam Material Properties for Underground Stone Mine Benching Operation by Employing Brittle Failure Criteria in FLAC3D
By Alim Elibol, Rosbel Jimenez, Mustafa Can Suner, Deniz Tuncay, Zach Agioutantis
LaModel is a displacement-discontinuity variation of the boundary element method, which is utilized to analyze the displacement and stress in flat-lying, tabular orebodies. In coal mining, the accurac
Jun 25, 2024
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Evaluation of Multiple-Seam Scenarios by Non-Traditional Methods
By S. E. Phillipson
The MSHA Technical Support, Roof Control Division's primary evaluation tool for coal pillar designs is the Analysis of Coal Pillar Stability (ACPS) program. However, ACPS is limited to evaluating inte
Jun 25, 2024
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ICGCM China—History, Networking, and Education
By Syd Peng, W. B. Guo, F. Du, L. Yang, J. Yw. Cheng
The annual ICGCM China was initiated in 2014. Up to 2023, ICGCM China has been held 9 times. In the 9 conferences during the past 10 years, about 559 papers in 17 topical areas were presented and atte
Jun 25, 2024
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Polyurethane Foam and Alternatives for Void Filling Applications
By Delbert Hamilton, Christopher Snyder
In the last three years there have been four uncontrolled heating events in mines that have been attributed to the use of polyurethane foam as a void fill product. These heating events are due to the
Jun 25, 2024
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Numerical Study on Mining-Retention Ratio Optimization in Underground Solid Potassium Salt Mine
By Jin Zhao, Weijie Wei, Jinwang Zhang, Xiaohang Wan, Shengli Yang
Reasonable mining-retention ratio (ratio of room width to pillar width) is vital to recovery rate and stope stability in underground mining of solid potassium salt deposits. Based on the engineering b
Jun 25, 2024
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Valley Bottom Upsidence above a Longwall Operation with Strong Overburden Strata
By Steve Hicks, Zach Agioutantis, Greg Hasenfus, Zach Wedding
Most prediction methods used to calculate mining-induced subsidence rely on empirical formulations, which typically assume flat topography and uniform properties in the overburden. It is also well kn
Jun 25, 2024
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NIOSH Gas Well Stability Research: A Summary of Ground Control Engineering Considerations
By Peter Zhang, Daniel Su, Bo Kim, Berk Tulu
This paper summarizes significant findings from the ongoing NIOSH Gas Well Stability research over the past decade; in particular, the important ground control engineering considerations. Longwall-ind
Jun 25, 2024
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Research on Microseismic Passive Velocity Tomography Based on Template Matching Technology
By Shawn Boltz, Erik Westman, Derrick Chambers, Xingdong Zhaoa, Qiankun Zhua
Microseismic passive velocity tomography is becoming an effective technology for large-scale mining-induced stress monitoring in underground mines, especially in the field of early warning of mining-
Jun 25, 2024