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Excavation by Tunnel Boring Machine in Headrace Tunnel of Small Cross SectionBy Hori M, Komatsu T
In Japan, a small-diameter tunnel boring machine (TBM) of diameter 2.6 m applicable to a wide range of geology from hard rock to soft strata was developed with the purpose of reducing construction
Jan 1, 1987
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Excavation Construction for the Transbay Transit CenterBy Nick O’Riordan, Kaitlyn L. Fleming, Michael Riemer, Youssef M. A. Hashash, Stephen McLandrich, Mohamad Jammoul, Pierre Gouvin, Andrew Yeskoo
"To accommodate urbanization, cities are developing more underground space as a means to house public transportation systems and other entities. Underground developments often require construction of
Jan 1, 2015
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Excavation Damage, and Water and Gas Migration in an Inherently Anisotropic Argillaceous Rock FormationBy D. A. Le, T. S. Nguyen
"In Canada and other countries, several types of rock formations are being considered for the geological disposal of radioactive wastes. In order to better understand the ability of these rocks to con
Jan 1, 2015
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Excavation Design and Ground Support of the Gyratory Crusher Installation at the DOZ Mine, PT Freeport IndonesiaBy A Mulyadi, J Barber, R Golden
The Deep Ore Zone (DOZ) underground mine will be a 25 000 tpd mechanised block cave operation starting production in 2000. The ore handling system consists of a direct truck dumping 54 +74 gyratory cr
Jan 1, 2000
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Excavation Design and Mining Methods in the 1100 Ore Body, Mount Isa Mine, Australia.By B. J. K. Sullivan, Brian Hornsby
INTRODUCTION Mount Isa Mines Ltd. operates a copper and silver- lead-zinc property at Mount Isa in northwest Queens- land, Australia. Mount Isa is located in the tropics at latitude 20°43'S
Jan 1, 1982
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Excavation Design and Mining Methods in the 1100 Orebody, Mount Isa Mine, AustraliaBy Sullivan BJK
The 1100 orebody is a massive copper sul- phide orebody which contains a major portion of the Isa Mine copper ore reserves of 130 million tonnes at 3.2%. The underground mining of a deposit as larg
Jan 1, 1978
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Excavation Engineering - The Integration of Excavation Design, Blast Design and Reinforcement DesignBy Chitombo G. P, Thompson A. G
Excavation engineering involves three key design processes; excavation design, blast design and reinforcement design. An excavation engineering methodology is proposed in an attempt to promote integ
Jan 1, 1995
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Excavation Equipment For Small Soft Ground TunnelsBy Richard Lovat
INTRODUCTION Soft ground tunnels may be above the ground water table or they may be subaqueous. The ground may be clays, silts, sands, gravels, glacial deposits, boulder tills, and any of these in
Jan 1, 1981
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Excavation for Underground Salt PlantBy Jim Breedlove, Stephen P. Case, Mike Fabio
To meet salt production needs over the remaining life of the Cayuga Mine at Lansing, New York, the Salt Division of Cargill, Inc. decided to build a new underground screening plant. The new plant requ
Jan 1, 1996
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Excavation for Underground Salt Plant (1f20b243-bfe6-4609-ad5c-cf707711398b)By Steven P. Case
To meet salt production needs over the remaining life of the Cayuga Mine at Lansing, New York, the Salt Division of Cargill, Inc. decided to build a new underground screening plant. The new plant requ
Jan 1, 1996
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Excavation Methods For Long Highway Tunnels And Ventilation Shafts In The Swiss AlpsBy Rudolf E. Pfister
One of the Swiss transalpine highways includes two remarkable tunnels: the 16.3 km long Gotthard Road Tunnel and the 9.3 km long twin tube Seelisberg Tunnel, both presently under construction. Large d
Jan 1, 1976
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Excavation Of A Major Tunnel By Double Shielded TBM Through Mixed Ground Of Basalt And Clayey SoilsBy P. W. Hunter
The construction of a major sewerage scheme requiring 15.3 km of 5.5m excavated diameter tunnel in basalt, mixed and soft ground has been undertaken by the Melbourne and Metropolitan Board of Works.
Jan 1, 1987
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Excavation of a mine shaft through deep overburden by natural freezingBy John De La Vergne, Morri Medd
"This paper describes the sinking of a circular concrete ventilation shaft through 110feet of water-bearing overburden. The brine circulation freezing method was used to stabilize the walls during exc
Jan 1, 1982
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Excavation of a Tunnel to Reach a Large Underground Cavern Roof FallBy H. S. Venkatesh R. Balachander, G. C. Naveen
During the construction of a 1020 MW underground hydroelectric project in Bhutan a huge rock fall took place in the Downstream Surge Chamber (DSC) during March 2016. The total quantity of rock in the
Jan 1, 2019
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Excavation Of Bear Swamp Underground PowerhouseBy James J. Brady
The basic story at Bear Swamp was how to excavate an underground chamber 79 feet wide by 227 feet long and 150 feet high, along with the related access, tarbrace, leads, power tunnels and shafts, do i
Jan 1, 1974
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Excavation Of Inclined Shaft By Reaming In Two StagesBy P. Hambach
Murer Company, Andermatt, Switzerland, can claim to have done pioneer work in the construction of inclined shafts. This happened in 1968/69, when we decided to bore with a Wirth tunnel borer an inclin
Jan 1, 1974
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Excavation of Large NATM Tunnel by Roadheader with Automatic Cutting DeviceBy Yamamoto Y, Ohyama H
In case of NATM, mechanical cutting is desirable in view of the original purpose of not spoiling natural ground. As typical tunnelling machines, there are two (2) kinds available: one is "Full Fac
Jan 1, 1987
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Excavation of Rock by Non-Explosive Method at Queen Mary Hospital, Hong KongBy Guy Bridges
Site formation works requiring excavation of rock at the Queen Mary Hospital redevelopment site was restricted due to extremely low ground vibration limits. Non-Explosive excavation method called Elec
Feb 1, 2020
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Excavation of the Gjovik Olympic Mountain Hall - The World's Largest Rock Cavern for Public UseThe Gj0vik Olympic Mountain Hall is the world's largest underground cavern for public use and was created primarily to facilitate the ice hockey tournaments for the 1994 winter Olympics in Norw
Jan 1, 1995
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Excavation of the Headrace Tunnel, King River Power DevelopmentBy Baynes F. J, Bermingham A. G
The 6000m long King Headrace Tunnel will be driven through hard Owen Conglomerate in the Eastern third and feldspar porphyry in the Western two thirds, with the anticipated hardness up to 350MPa un
Jan 1, 1987