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Problems with determining oxygen deficiencies for use in ratios used for assessing spontaneous combustion activitySeveral common ratios used for determining spontaneous combustion activity rely on comparing the amount of various products of oxidation with the amount of oxygen consumed to produce these products. A
Jan 1, 2009
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Mitigating Tunnel Launch and Reception ChallengesBy Steven W. Hunt
Appropriate seals, portal ground improvement, and compatible shaft construction techniques are vital elements for launching and receiving tunnels effectively in urban areas where adjacent property req
Jan 1, 2008
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Investigation and Cement Grouting of Big Creek Tunnel 2: A Leaking Historic Hydroelectric TunnelBy David Van Horsen
Big Creek Tunnel 2, constructed in 1912, is located in the Sierra Nevada Mountains of California, east of Fresno. It is horseshoe and circular shaped with a 3.6m (12ft) diameter and extends 6.6km (4.1
Jan 1, 2008
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Guidance for Partial Face Excavation MachinesBy Jochen Belz, Allan Henneker, Nod Clarke-Hackston
For the construction of tunnels and other underground structures, extraction of the exact amount of material is of paramount importance both economically and for engineering purposes. In the Sequentia
Jan 1, 2007
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Effect of intrinsic coal properties on self-heating ratesOver the past seven years a large database of coal self-heating rates under adiabatic conditions has been developed at The University of Queensland. Coals have been tested from Australia (Queensland a
Jan 1, 2009
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New York City’s Harbor Siphons Water TunnelBy Colin Lawrence, Michael S. Schultz
Due to the planned deepening of the NY Harbor, NYCEDC/NYCDEP is planning to replace two existing water lines between Brooklyn and Staten Island with one deeper water pipe. The crossing, just north of
Jan 1, 2007
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L-73 Tunnel, Woodbury, MinnesotaBy Michael B. Gilbert
The Woodbury L-73 Tunnel involved the design and construction of a 96-inch tunnel driven through 8,080 lf of very difficult ground conditions. Anticipated ground and groundwater conditions consisted o
Jan 1, 2008
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Assessment of stability of flow in a modified mine ventilation network considering a presence of fire hazardsBy W. Dziurzynski
The present article sets forward the results of field tests that made it possible to validate the mathematical model used in the VENTGRAPH ventilation engineer programmes. The case considered relates
Jan 1, 2009
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Industrial Minerals 2007Editor?s note: Each year, the June issue of Mining Engineering features an industrial minerals review. Several people put in a fair amount of time in developing the material for this issue. Thank y
Jan 1, 2008
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Ventilation of the Northern Mujsky Railway TunnelBy S. G. Gendler
The choice of ventilation schemes in the Northern Mujsky railway tunnel and definition of the nec-essary quantities of air ensuring regulated radiation conditions in the tunnel system has been accompl
Jan 1, 2009
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Endangered Species: Mining, Metallurgical and Petroleum Engineering DepartmentsBy William G. Pariseau
Few departments of mining, metallurgical or petroleum engineering in the United States have critical mass. Cost per student credit hour (SCH) in departments across the country are usually the highest
Jan 1, 2002
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Railroad Crossing by Microtunneling: MTBM Successfully Mines Side-by-Side Twin Tunnels Six Feet Below Railroad - West Elizabeth Avenue Storm Drainage Project, Linden, New JerseyBy Keith Schaeffer
This paper presents a history of the planning, engineering and construction completed for the railroad tunnel crossing part of the West Elizabeth Avenue Storm Drainage Project, undertaken to relieve f
Jan 1, 2008
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Prediction Versus Actual Response of Rocks in an Excavation of Underground Cavern at the Lam Ta Khong Pumped Storage ProjectBy Pratoomkhuan N. Lertsgoon
A large underground cavern with dimensions of 25m × 175m × 49m (W×L×H) was excavated in sandstone and siltstone to house 4 units of hydropower generator and was completed in 2000. In feasibility study
Jan 1, 2003
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Field Application of NTH Fracture Classification at the Second Manapouri Tailrace Tunnel, New ZealandBy Don F. Macfarlane
This paper describes the field application of the NTH fracture classification to rock encountered in the construction of the 9.6 km long, 10m diameter, Second Manapouri Tailrace Tunnel. Excavation of
Jan 1, 2008
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EPB Tunnel Boring Machine Design For Boulder ConditionsBy Craig Bournes, David Chapman, Michael DiPonio
Historically, boulders are a frequent source of problems in soft ground tunneling. During tunnel construction, the need to manually break and remove boulders as obstructions causes delays to the proje
Jan 1, 2007
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Benefits of Early Collaboration Between Designers and Suppliers in Tunnel DesignBy Günther M. Volkmann
Continuous developments in tunneling require knowledge transfer between designers and suppliers to optimize the application of support systems. This collaboration allows the designer access to the lat
Jan 1, 2008
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Geotechnical Considerations for the Final Design of the Detroit Upper Rouge Tunnel CSO ProjectBy Jean Habimana
The Detroit Upper Rouge Tunnel CSO Control Project will capture and store up to 201 MG of combined sewer overflow from 28 outfalls in Detroit, Dearborn Heights and Redford Township during wet-weather
Jan 1, 2008
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Earth Pressure Balance Machines for the Silicon Valley Rapid Transit Project - Basis of DesignBy Jimmy Thompson
The Santa Clara Valley Transportation Authority is designing the Silicon Valley Rapid Transit Project in San Jose, California. The project includes 6.9 km (4.3 miles) of twin-bored tunnels to be const
Jan 1, 2008
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Groundwater Control For Two-Pass Soft Ground TunnelingBy Cary Hirner, David Stacey, William A. Rochford
Design considerations and construction techniques were implemented to address groundwater infiltration from a confined aquifer during the excavation and lining of the Cady Marsh Flood Relief Tunnel. T
Jan 1, 2007
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NATM Design For Stanford Linac Coherent Light Source TunnelsBy Jonathan Taylor, Irwan Halim, Frederick (Rick) Vincent
The new underground facilities for the LINAC Coherent Light Source project at the Stanford Linear Accelerator Center in Menlo Park, CA, are constructed in very weak sedimentary rock interspersed with
Jan 1, 2007