In Situ Monitoring Of Coal Mine Floor Heave PDF Download

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Controlling Coal Mine Floor Heave

Controlling Coal Mine Floor Heave
Author: William J. Wuest
Publisher:
Total Pages: 28
Release: 1992
Genre: Coal mines and mining
ISBN:

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Geotechnical Instrumentation and Monitoring in Open Pit and Underground Mining

Geotechnical Instrumentation and Monitoring in Open Pit and Underground Mining
Author: T. Szwedzicki
Publisher: CRC Press
Total Pages: 534
Release: 2020-07-15
Genre: Science
ISBN: 1000099784

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As mining operations increase in scale and mines go progressively deeper, the geotechnical input into mine design is of importance. This book covers topics in geotechnical instrumentation and monitoring, including coverage of groundwater, displacement and environmental monitoring.


Monitoring and Sampling Approaches to Assess Underground Coal Mine Dust Exposures

Monitoring and Sampling Approaches to Assess Underground Coal Mine Dust Exposures
Author: National Academies of Sciences, Engineering, and Medicine
Publisher: National Academies Press
Total Pages: 169
Release: 2018-10-04
Genre: Science
ISBN: 0309476011

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Coal remains one of the principal sources of energy for the United States, and the nation has been a world leader in coal production for more than 100 years. According to U.S. Energy Information Administration projections to 2050, coal is expected to be an important energy resource for the United States. Additionally, metallurgical coal used in steel production remains an important national commodity. However, coal production, like all other conventional mining activities, creates dust in the workplace. Respirable coal mine dust (RCMD) comprises the size fraction of airborne particles in underground mines that can be inhaled by miners and deposited in the distal airways and gas-exchange region of the lung. Occupational exposure to RCMD has long been associated with lung diseases common to the coal mining industry, including coal workers' pneumoconiosis, also known as "black lung disease." Monitoring and Sampling Approaches to Assess Underground Coal Mine Dust Exposures compares the monitoring technologies and sampling protocols currently used or required by the United States, and in similarly industrialized countries for the control of RCMD exposure in underground coal mines. This report assesses the effects of rock dust mixtures and their application on RCMD measurements, and the efficacy of current monitoring technologies and sampling approaches. It also offers science-based conclusions regarding optimal monitoring and sampling strategies to aid mine operators' decision making related to reducing RCMD exposure to miners in underground coal mines.


Information Circular

Information Circular
Author:
Publisher:
Total Pages: 606
Release:
Genre: Mines and mineral resources
ISBN:

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Geomechanics and Control of Soft Mine Floors and Sides (GEOSOFT)

Geomechanics and Control of Soft Mine Floors and Sides (GEOSOFT)
Author:
Publisher:
Total Pages: 139
Release: 2015
Genre:
ISBN: 9789279440786

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GEOSOFT researched soft coal mine floor and side behaviour to develop enhanced design and construction solutions. Longwall mining on soft floor rocks is difficult and requires safe efficient techniques to extract coal at economically viable rates. The Geosoft studies have led to guidelines from the design and the optimisation of powered supports operating on soft rock floors. These guidelines have been achieved by laboratory testing of an instrumented powered support on a purposely designed hydraulic cushion to simulate soft floor behaviour; then monitoring in-situ underground and results from validated numerical modelling. Rockbolted coal mine roadways need to be designed and adequately supported to allow safe and efficient longwall coal production. Numerical modelling is a powerful tool for aiding design and improvements have been made in its use and application. Improvements in mesh, polyurethane resin products and placement techniques, and better rib anchoring systems have been achieved to improve rib support. Floor heave is primarily managed by removal and more pro-active management practices have optimised the dinting process and rib stability. Understanding of closed support design where strata deformation can subject tunnel linings to long term loading has been improved. Laboratory testing of shotcrete creep properties allowed appropriate constitutive models to be developed for numerical models for more accurate simulation of this support method. Different floor support designs were modelled indicating that curved inverts provided the lower maintenance solutions resisting cracking better than slab inverts.