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Large Capacity Flotation Cells ? IntroductionBy W. H. Reck
he need in the mineral industry to treat increasingly larger tonnages has caused a demand for larger installations. In order to limit the size of these installations, it was necessary to build machine
Jan 1, 1969
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Large Cast Blasting Programs Require Design FlexibilityBy Jeff Wachendorf
As the title implies, this paper details the start of a cast blasting and the design flexibility required to satisfy different parameters encountered on a large coal mine employing cast blasting as th
Jan 1, 2015
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Large Column Leaching at Telfer Gold MineBy Dunne R, Defilippi J
Dump leaching began at Teller in late-1988 at a rate of 4 MTPA and has been progressively expanded to the present rate of 10 MTPA. Teller's on-going commitment to dump leaching is driven by the a
Jan 1, 1992
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Large Compact Bucket Wheel ExcavatorsMost compact bucket wheel excavators in use are in the small to medium range. Large compact bucket wheel excavators compete directly with con- ventional longer boom excavators which have operational
Jan 1, 1989
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Large Cross Section Tunnels In Soft GroundBy Z. Eisenstein, H. Heinz
INTRODUCTION Contemporary underground transit systems often require cross sections which are not adaptable to shield tunnelling. Due to the frequently large dimensions of these cross sections, whic
Jan 1, 1989
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Large deformation analysis for rock excavations - a numerical studyBy J. A. Hudson, X. D. Pan
A rock mass responds to excavation according to the properties of the intact rock, the network of contained discontinuities and the susceptibility of the rock mass to weathering. Large deformation oft
Sep 1, 1991
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Large Deformation of Smart Functionally Graded Beams under Thermal LoadingsBy A Sadough Vanini
In this paper large deformation of smart functionally graded beams with initial imperfection and under thermal loadings is considered. Smart beam consist of two types of layers. One layer is made from
Oct 1, 2011
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Large Diameter and Deep Hole Presplitting Techniques for Safe Wall StabilityBy Sam Bang Jr, Rodney Burke
As mining progresses in the West, the depth of material has increased, making highwall stability a major factor in safety and production. The Jim Bridger Coal Mine’has made highwall stability a priori
Jan 1, 1998
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Large Diameter and Deep Hole Presplitting Techniques for Safe Wall Stability (702d8f82-2979-48dc-9390-2e853856733d)By Tom McDonald, Rodney Burke
As mining progresses in the West, the depth of material has increased, making highwall stability a major factor in safety and production. The Jim Bridger Coal Mine has made highwall stability a priori
Jan 1, 1997
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Large Diameter Auger Cast Piles At Audi Field, Dc United's New Soccer StadiumBy Christophe H. Locussol
D.C. United, the professional soccer team located in Washington, D.C., completed a 20,000 seat capacity stadium in July 2018 named Audi Field. The project initially considered a foundation system cons
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Large Diameter CIDH Construction In Cohesionless Soils By The Use Of Rotator/Ocsillator Techniques: A Case Study - 116th Avenue Bridge Over The Gila River Phoenix, Az.By M. Cornelius
Drilled shaft construction through caving soils has historically been an uncertain, risky and costly operation. Uncertain, because the zone of caving may or may not be known, risky because the loss of
Jan 1, 1999
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Large Diameter Core SamplingBy P J. Jacobs
FORACO is the third-largest global drilling services company, and recently celebrated its 50th anniversary. The company’s historical roots are in French-speaking West Africa, delivering hydrogeologica
Jul 29, 2014
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Large Diameter Drilling Operations Of Multi Head Down The Hole Hammer Drill Through Boulders And Granite - Mach Drilling System And Some Construction ExamplesBy J. Nakayama
Construction of foundation piles or diaphragm walls through rocky or boulder containing formations has been long-standing difficulty. It has been widely understood that the down-the-hole hammer is t
Jan 1, 1989
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Large Diameter Helical Piles for Refinery ExpansionBy Chris Normand, Paul Volpe, Eric Wey, Howard Perko, Burt Ogilvie, Patrick Murray
"A refinery expansion project for Marathon Petroleum Company in Southern Louisiana required existing medium to large pipe racks to be expanded for additional capacity. Foundation modifications were ne
Jan 1, 2017
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Large Diameter Machine Bored Piles In AustraliaBy W. J. Kingwell
Where the equipment, technique and materials are available for the construction of large diameter rock socketted piles, this is frequently the most economical and environmentally acceptable method of
Jan 1, 1989
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Large Diameter Mine Shaft Construction Using A Rodless Boring MachineBy A. G. Raine
For the technological age in which we live, with the constant goal of further improvement in the efficiency of mechanized systems, the need for a replacement of the antiquated drill and blast method o
Jan 1, 1984
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Large Diameter Open-End Pipe Pile Driveability Analysis Including Geotechnical Friction FatigueBy Patrick J. Hannigan, Frank Rausche, Rozbeh B. Moghaddam
Large diameter open-end pipe piles are increasingly used as deep foundations to support heavy onshore and offshore structures. During the driving process, several factors such as subsurface conditions
Jan 1, 2019
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Large Diameter Pile Driving, Acceptance And Soil-Pile Setup New East Span San Francisco-Oakland Bay BridgeBy Saba Mohan
This study presents results based on the Pile Installation Demonstration Project (PIDP) that was conducted as a part of the East Span San Francisco-Oakland Bay Bridge Seismic Safety Project. For the t
Jan 1, 2002
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Large Diameter Piles For Deep Foundation Of Orsang Aqueduct - SynopsisBy A. B. Desai
The construction of 1144 nos. of piles, each 1.5 m diameter, bored-cast-in-situ type and varying in depths from 6.5 to 23m, has been completed as foundation for 26 piers of 548 m long aqueduct across
Jan 1, 1996
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Large Diameter Presplitting Improved Through Two Novel TechniquesBy GF Brent, Armstrong L. W
It is recognised that presplitting is a special case in blasting which requires the reduction of conventional explosive pressures in order to avoid excessive rock damage. Two routes to achieving this
Jan 1, 1998