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Specifications For Initial Support In Rock TunnelsBy William F. Daly, William H. Hansmire
Installation of initial tunnel support is often the most uncertain element of work in the design of, and a contractor bidding on, construction of a rock tunnel. The risks the construction contractor a
Jan 1, 1985
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Horizontal Geotechnical Investigations for TunnelingBy Nick Salisbury, Alan Howard, Scott Tunison
INTRODUCTION Geotechnical investigations for tunneling projects typically use vertical test borings and, to a lesser extent, angled borings. Horizontal drilling applications were often limited to
Jan 1, 2005
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Control Of Surface Movements Above Active Coal Mines In AppalachiaBy A. Jarosz
The surface manifestation of underground mining usually entails five distinct types of surface movements, which can affect or damage surface structures, facilities and renewable resources. These m
Jan 1, 1986
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Urban Tunneling Technology - European ExperiencesBy Erich J. Jacob
In the past 15 years the enforced improvement of the public traffic systems caused a boom in urban tunnel construction. In 1961 the City of Paris started to build the Express-Metro. Of the 47 km long
Jan 1, 1976
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European Tunneling Technology And MethodsBy Brian Fulcher
While tunneling in Europe has been a tradition for centuries, many companies and countries have embraced tunnel innovation with considerable vigor and creativity. Indeed, local needs and site conditi
Jan 1, 2007
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Rehabilitation of a Brick-Lined AqueductBy Taehong Kim, Carl Pannuti, Nikolas Sokol, Walter Herrick
BACKGROUND This paper discusses work performed as part the rehabilitation of the gravity flow section of the New Croton Aqueduct (NCA) during an approximately two year period between 2004 and 2006
Jan 1, 2007
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Measurement and Analysis of Foundation Tilt Resulting From Mine Subsidence in Southern IllinoisBy Larry R. Powell
The Bureau of Mines, in cooperation with the Illinois Mine Subsidence Insurance Fund, is monitoring the response of two foundations to ground movements induced by subsidence from high extraction minin
Jan 1, 1986
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SelectionConsiderations - Using a ConsultantBy Alfred Weiss
Selecting a minicomputer is not unlike selecting a costly piece of mining equipment such as a truck, shovel, crusher, or conveyor belt system. A marked difference might lie in the frequency at which s
Jan 11, 1981
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What Will Halt The Worldwide Decline In Mine Equipment Performance?By R. Adsero
The analysis of equipment trends in AUSIMM?s Revision of Monograph 19; Australasian Mining and Metallurgy Operating Practices (AMMOP) in the paper by Dight et al (in press) raised some interesting and
Feb 27, 2013
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Waterproofing of a Subsea Tunnel with a Unique Sprayable Membrane— The Nordöy Road Tunnel, Faroe IslandsBy Sigurd L. Lamhauge, Karl Gunnar Holter, Svein E. Kristiansen
An innovative sprayable waterproofing membrane in combination with the traditional Nordic method of waterproofing with polyethylene foam sheets was used for the waterproofing of the tunnel. The spraya
Jan 1, 2007
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Canadian Experience in Open Pit MiningBy R. K. Singhal
Canada is a world class producer and exporter of minerals and mineral products. Today's highly mechanized Canadian open pits use state-of-the-art equipment and support technology. They are taking
Jan 1, 1995
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Construction of the West Area CSO Tunnels and Pumping StationBy Ray Hutton, Darrell Liebno, Taro Nonaka
Background Population growth and increasingly stringent regulatory controls on water quality across North America have resulted in municipal governments investing heavily in infrastructure to cont
Jan 1, 2007
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Predominance Area Diagrams Bounding the Cu-As-S-O System’s 3D Predominance Diagram at 900 K (627 °C) Mining, Metallurgy and Exploration (8a1d5964-4d01-4605-bf23-bcfbb4667775)By M. Sadegh Safarzadeh, Stanley M. Howard
The two-dimensional predominance area (Kellogg) diagram (PAD) surfaces bounding the three-dimensional Cu-As-S-O system were constructed at 900 K. The computations employed gases As4O6(g), O2(g), and S
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Predominance Area Diagrams Bounding the Cu-As-S-O System’s 3D Predominance Diagram at 900 K (627 °C) Mining, Metallurgy and ExplorationBy M. Sadegh Safarzadeh, Stanley M. Howard
The two-dimensional predominance area (Kellogg) diagram (PAD) surfaces bounding the three-dimensional Cu-As-S-O system were constructed at 900 K. The computations employed gases As4O6(g), O2(g), and S
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Utilization Of Coal Mine Refuse In Highway Embankment Construction ? IntroductionBy Phillip E. Butler
Since early 1973, the Pennsylvania Department of Transportation (PennDOT) has been actively engaged in the utilization of coal mine refuse in the design and construction of highway embankments. The So
Jan 1, 1975
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Importance Of Iron Oxides As Carriers For Heavy Metals In Contaminated Soils And Prospects For Their SeparationBy H. Hoberg, M. Langen, B. Hamacher
Since the term "abandoned hazardous sites" was first coined in the 1978 environmental report of the Council of Environmental Specialists, a number of different types of technology has been developed i
Jan 1, 1995
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Role Of The Mill In A Competitive Minerals Company - Is Low Cost Enough?By Bruce Cavender
Historically, the processing function has been regarded as efficiently managed as long as production costs were kept low, recovery was adequate and sufficient plant capacity was avail-able. In this pa
Jan 1, 2008
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The Life Cycle of Water Used in Flotation: a Review Mining, Metallurgy and ExplorationBy Shaoxian Song, Ling Xia, Hongqiang Li, Yubiao Li, Yunliang Zhao, Shaobing Xie
Since human daily demands for fresh water have been increased significantly, the supply of fresh water for the mining industry, especially froth flotation, should be considerably reduced. In addition,
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Physiological Analysis Of Human Generated Heat In A Refuge AlternativeBy T. E. Bernard
Occupying a refuge alternative (RA) is an accepted practice in mine fires and explosions when escape is not feasible. MSHA has promulgated a final rule on refuge alternatives that includes a recogniti
Feb 27, 2013
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Reaction Kinetics Of Ferrous Regeneration For Alternate Anode Reaction TechnologyBy E. A. Sarver
The Fe(II) regeneration process is an important aspect of Alternate Anode Reaction Technology (AART) for copper electrowinning (EW). In AART, Fe(II) is oxidized to Fe(III) at the anode during EW, and
Jan 1, 2007