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Drilling – Equipment, Methods and Materials - Mechanics of Differential Pressure Sticking of Drill CollarsBy H. D. Outmans
A method has been developed for determining the relative water wet-tability (fraction of the surface wet by water) of porous media. This method involves the adsorption of methylene blue dye from an aq
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Drilling – Equipment, Methods and Materials - Properties of Cementing Compositions at Elevated Temperatures and PressureBy Dwight K. Smith, Greg Carter
Studies have been conducted on The properties of many deep well cementing compositions to determine their Strength behavior over curing periods to 180 days at elevated tem-peratures and 3,000 psi pre
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Drilling – Equipment, Methods and Materials - Use of Chemicals to Maintain Clear Water for DrillingBy J. E. Fox Jr., J. L. Lummus, J. P. Gallus
Fresh water or brine drilling fluids may be kept free of suspended drilled solids by the addition of a water soluble acrylamide-carboxylic acid copolymer at the flowline. Addition of from .01 to 0.2 l
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Drilling – Equipment, Methods and Materials - Water-In-Oil Emulsion CementsBy M. R. Tek, K. H. Coats, D. L. Katz
The performance of a gas reservoir su,bject to water drive is often affected by interference due to gas procluction or injection in neighboring reservoirs adjacent to a common aquifer. Field data avai
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Drilling-Equipment, Methods and Materials - A New Device for Field Recovery of Barite From Drilling Mud: I. Theory and Laboratory ResultsBy R. F. Burdyn
The inadequate use of centrifugation to economically recover solids from weighted drilling fluids reflects the need for better equipment and techniques for this putpose. Laboratory studies in the deve
Jan 1, 1966
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Drilling-Equipment, Methods and Materials - A New Device for Field Recovery of Barite: II. Scale-Up and DesignBy D. E. Hawk, R. F. Burdyn, F. D. Patchen
Earlier work on a mud separator for barite recovery is extended to the design and construct ion of a rugged field unit. Problems associated with scale-up for field use include the me of dilution water
Jan 1, 1966
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Drilling-Equipment, Methods and Materials - Efforts to Develop Improved Oilwell Drilling MethodsBy L. W. Legerwood
During the past three decades, the oil industry has expended increasing eflorts seeking improved drilling tools or systems to reduce drilling costs. The total cost of these efforts is unknown, but it
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Drilling-Equipment, Methods and Materials - Experimental Tests of a Method for Drilling With ExplosivesBy L. H. Robinson
A proposed method of drilling utilizes sequential detonation of two types of explosive charges delivered to the hole by a conventional drilling fluid through pipe. A shaped charge first produces a lon
Jan 1, 1966
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Drilling-Equipment, Methods and Materials - Factors Involved in High-Temperature Drilling FluidsBy D. J. Weintritt, R. G. Hughes
Statistics show arz increase in the average depth of wells drilled in recent years. As a corollary to this trend, drilling fluids have been improved in an effort to meet the problems inherent at tempe
Jan 1, 1966
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Drilling-Equipment, Methods and Materials - Heat Losses During Flow of Steam Down a WellboreBy A. Satter
Studies of wellbore heat transtnission during the injection of a hot fluid, as either gas or liquid, have appeared in he literature. The present investigation takes into account the effect of condensa
Jan 1, 1966
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Drilling-Equipment, Methods and Materials - Rock-Bit Tooth Friction AnalysisBy J. B. Cheatham
The influence of friction on the force required for an idealized bit tooth to penetrate a "plastic" rock is analyzed. The rock is assumed to obey the Coulomb-Mobr yield criterion and the tooth is repr
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Drilling-Equipment, Methods and Materials - Shear Failure of Rock Under CompressionBy W. C. Maurer
A study of the mechanics of shear failure of rock under pressure has been made. The transition from brittle to ductile failure occurs when the friction along the fracture surfaces exceeds the shear st
Jan 1, 1966
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Drilling–Equipment, Methods and Materials - Laboratory Drilling Performance of the Full-Scale Rock Bit (with discussion)By F. H. Deily, D. S. Rowley, R. J. Howe
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Drilling–Equipment, Methods and Materials - The "Perfect-Cleaning" 'Theory of Rotary DrillingBy W. C. Maurer
A drilling-rate formula for roller-cone bits is derived from rock crater-ing mechanisms. This formula holds for "perfect cleaning", which is defined as the condition where all of the rock debris is re
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Drinking Water Quality Management for Mining Operations in Western AustraliaBy J E. Wajon
This paper discusses the background, requirements, need and content of plans for management of drinking water self-supplied to mining-related operations, including construction camps, especially in re
Nov 26, 2013
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Dripping Into Subterranean Cavities From Unsaturated Fractures Under Ventilated ConditionsBy R. Fedors, T. Ghezzehei, D. Or
The phenomena of dripping into cavities (e.g. tunnels and drifts) within an unsaturated fractured porous medium under ventilated conditions is studied to improve estimates of dripping rates, drop size
Jan 1, 2000
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Drivability Of Piles By VibrationBy Don C. Warrington
This paper is a survey of the various methods and research efforts by which the drivability of piles is determined. First, a brief outline of the basic theory and the important parameters for driving
Jan 1, 1989
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Drive Options For Belt and Apron FeedersBy Laszlo Toth
A feeder is used to control the gravity flow of bulk solids from storage areas, like a bin or a stockpile. For this type of application, it is important to select a proper drive that can fulfill all
Jan 1, 2003
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Driven Pile Cost Comparison For Two Large Wisconsin Dot Bridge ProjectsBy Van E. Komurka
This paper presents a cost comparison of the driven pile foundations for two large Wisconsin Department of Transportation (?WisDOT?) projects in Milwaukee, Wisconsin: the Marquette Interchange South L
Jan 1, 2009
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Driven Pile Foundation Design And Construction Genentech Hall - UCSF Mission Bay CampusBy Robert E. Fosse
Driven 14-inch-square concrete piles were used as the foundations of Genentech Hall at the new University of California, San Francisco Mission Bay Campus. The five-story, steel eccentrically-braced fr
Jan 1, 2002