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Reservoir Engineering–General - Pressure Drop in a Composite Reservoir
By T. L. Loucks, E. T. Guerrero
Pressure drop characteristics in a system composed of two adjacent concentric regions of different permeability were studied. The differential equations for continuity of mass flow in the two regions
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Cleveland Paper - Manganese in Non-ferrous Alloys (with Discussion)
By M. G. Corson
Information regarding the use of ixanganese alloys has hitherto been incomplete and available only from widely scattered sources. This paper attempts a systematic description of properties and uses of
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Logging and Log Interpretation - A Sonic Method for Analyzing the Quality of Cementation of Borehole Casings
By P. Majani, F. P. Kokesh, M. Grosmangin
Determination of the quality of cementation of casing in oil wells in the past has involved inflow and circulation tests to insure that the producing zones were adequately sealed off from the adjacent
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Drilling – Equipment, Methods and Materials - A Laboratory Study of Rock Breakage by Rotary Drill...
By B. E. Eakin, R. T. Ellington
An apparatus and a procedure for determining the viscosity behavior of hydrocarbons at pressures up to 10,000 psia and temperatures between 77 and 400° F are described. The equipment is suitable for m
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Drilling – Equipment, Methods and Materials - Phenomena Affecting Drilling Rates at Depth
By L. W. Holm
Laboratory flooding experiments on linear flow systerns indicated that high oil displacement, approaching that obtained from completely miscible solvents, can be attained by injecting a small slug of
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Cleveland Paper - Comparisons of Blast-Furnace Results
By Frank Firmstone
It is proposed to consider here only comparisons made between results obtained when the materials employed are precisely the same, two furnaces at the same works for example, or the same furnace under
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Pipelining – Equipment, Methods and Materials - General Turbulent Pipe Flow Scale-Up Correlation for Rheologically Complex Fluids
By L. L. Melton, D. L. Lord, B. W. Hulsey
A mathematical model d1.20p/4L = A(8v)8 derived from the Blasius equation is proposed to be applicable to turbulent flow through straight cylindrical pipe for time-independent fluids which produce a d