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Hydraulic Backfilling Techniques For Subsidence Control
By III Scotland
Genstar's underground mine at Texas, MD experienced a failure of the mine roof and subsequent damage to an underground backfill caused by surface floodwaters. A hydraulic backfilling program was
Jan 1, 1992
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Hydraulic Fracturing And Geothermal Energy Development In Japan ? Introduction
By Hiroyuki Abé
This paper is a review of research and development on geothermal energy extraction in Japan especially on hydraulic fracturing. First recent geothermal developments in Japan are outlined in Part I. An
Jan 1, 1982
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Hydraulic Hoisting & Long Distance Pumping of Coal
By R. E. McElvain
"Hydraulic transportation of solids in suspension with water or other carriers, such as oil is becoming more practical as economic situations develop with respect to the railroads and other carriers.
Jan 1, 1978
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Hydraulic Performance Tests Of A Cement Grout Borehole Seal
By W. B. Greer, J. J. K. Daemen
Introduction The performance of seals in boreholes, shafts and tunnels is an important concern in mine safety, in the control of effluents from operating and abandoned mines and in the underground
Jan 1, 1993
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Hydraulic Performance Tests Of A Cement Grout Borehole Seal (68602f9c-7230-425d-ac82-6841809bf1a6)
By W. B. Greer
The performance of seals in boreholes, shafts, and tunnels is an important concern in mine safety, in the control of effluents from operating and abandoned mines, and in the underground containment of
Jan 1, 1992
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Hydraulic Pulse Generator For Nonexplosive Excavation
By J. J. Kollé
A compressed-water hydraulic pulse generator (HPG) for nonexplosive blasting of rock and concrete is described. Energy is stored in the HPG by compressing water to ultrahigh pressure. A large, fast-op
Jan 1, 1998
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Hydraulic Pulse Generator For Nonexplosive Excavation (10f1a281-9a0e-412e-ac65-1440a2c270ad)
By J. J. Kollé
A compressed-water hydraulic pulse generator (HPG) for nonexplosive blasting of rock and con¬crete is described Energy is stored in the HPG by compressing water to ultrahigh pressure. A large, fastope
Jan 1, 1997
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Hydraulic Shovel Digging Phase Simulation and Force Prediction Using Machine Learning Techniques - Mining, Metallurgy & Exploration (2021)
By JESSICA W. A. AZURE, Samuel Frimpong, AZUPURI G. A. KABA, FORSYTH A. KADINGDI, PROSPER E. A. AYAWAH
This study developed machine learning (ML) models for predicting rock formation reactive forces experienced by a hydraulic shovel bucket during excavation. To do this, rock formation in the form of mu
Sep 27, 2021
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Hydraulic Transportation Of Coal From Face To Preparation Plant - 1. Introduction
By William N. Poundstone
Since World War II, when off-track mining became popular, mining machinery has undergone much change. However, the change has been basically to make the machines more powerful, more productive and mor
Jan 1, 1974
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Hydraulic Transportation Of Coarse Coal Slurries
By William N. Poundstone
Consolidation Coal Company, through the mining research division of Continental Oil Company, is now undertaking the installation of a full-scale hydraulic transportation system to carry coarse coal fr
Jan 1, 1977
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Hydraulic Underground Mining of Oil Sands ? The Next Big Step?
By Dwayne D. Tannant
This paper presents a new mining concept for oil sands called ?hydraulic underground mining of oil sands? or HUMOS. While this mining method is still at the conceptual stage it has great promise to al
May 1, 2001
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Hydraulically Supported Faces In Coarse And Loose Soils
By Lothar Anheuser
Theoretical research, laboratory tests and practical experience confirm the possibility to stabilise the excavated tunnel front by suitably composed slurries even in coarse ground with extremely high
Jan 1, 1983
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Hydro Power and Metallurgical Development in Norway
By Carl W. Volz
NORWAY'S metallurgical development, which has extended over many centuries, is intimately associated with that country's unique topography and climatic conditions. It is a rugged mountainous
Jan 1, 1935
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Hydro-Electric Power Possibilities Along the Route of the Pacific Great Eastern Railway
By E. A. Cleveland
A glance at the map discloses the fact that the Pacific Great Eastern railway either traverses or crosses some of the most important rivers of the province: the Squamish with its branches the Stawamus
Jan 1, 1925
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Hydrodynamic Investigations for Characterizing Hydrogeological Environments Prior to Grouting
By Yu. A. Polozov, V. A. Lagunov, O. Yu. Lushinkova, Yu. I. Svirskiy, Eh. Ya. Kipko, Roy A. Williams
Hydrodynamic investigations in exploratory boreholes and grouting holes are conducted for the purpose of obtain¬ing information about the hydraulic properties of the hydrostratigraphic section to be i
Jan 1, 1993
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Hydrogen Peroxide Emulsion (HPE) – A Journey from Concept to Reality
By D. Scott Scovira, Thomas Gustavsson
The potential of hydrogen peroxide explosives was introduced to Thomas Gustavsson and Robert Håkland by Dr Miguel Araos through his development of hydrogen peroxide gel compositions (HPG). In 2020, Th
Jan 21, 2025
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Hydrogen Sulfide Controls for Slurry Shield Tunneling in Gassy Ground Conditions - A Case History
By Larry Taylor, Thomas Zdeb, Brian Jacobs, Dennis Jensen
Subway tunnels proposed for the Los Angeles County Metropolitan Transportation Authority (LAMTA) East Side Extension are to be excavated below the groundwater through an area of Los Angeles, Californi
Jan 1, 1999
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Hydrogeologic Characterization of Bedrock Units for Mining and Environmental Purposes Using Downhole Geophysical Logging Technology
By Nathan Painter, Kevin Andrews, Andrew Karpa
Groundwater flow in bedrock units is an important factor to be considered for most mining situations, both underground and open pit excavations. Characterization of the hydrogeologic system into which
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Hydrologic Considerations In Mine Closings
By Allan M. Johnson
Dewatering is a major operational cost at sane mines. Under certain conditions, costs associated with water disposal may continue beyond the productive life of the mine. For mines with mineralized wat
Jan 1, 1983
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Hydrologic Investigation, Design And Construction Of Flood Control Structures, Copperhill, Tennessee
By Ulrich Kappus
The purpose of the project is to divert flood flows of North Potato Creek. The project is located in the southeast corner of Tennessee near Copperhill, approximately 160 kilometers north of Atlanta, G
Jan 1, 1978