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Fluid dynamics / Hydrology / Gases / Pressure / Water / Capillary pressure / Water content / Imbibition / Vapor pressure / Chemistry / Physics / Thermodynamics


SPEA Comparative Study of Laboratory Techniques for Measuring Capillary Pressures in Tight Gas Sands K.E. Newsham, SPE, Apache Corp., J.A. Rushing, SPE, Anadarko Petroleum Corp., P.M. Lasswell, OMNI Laboratories I
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Document Date: 2011-05-17 23:15:22


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City

Houston / Tulsa / Richardson / San Antonio / Calgary / New York / Edinburgh / /

Company

McGraw-Hill Book Co. / OMNI Laboratories Inc. / Petroleum Engineers Inc. / Apache Corp. / Thomson / Anadarko Petroleum Corp. / /

Country

United States / Canada / /

Facility

Laboratory Tests / Laboratory Techniques / Texas Tech University / Laboratory Materials / Oilfield Chemistry / /

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IndustryTerm

excellent tool / salt solutions / low-permeability systems / oil and gas industry / gas sands / tight gas sands / low-porosity tight gas sands / tight gas / natural gas resource base / reservoir systems / gas-liquid systems / gas storage / gas constant / tight gas sand plays / oil-base mud program / capillary radius relative humidity universal gas / oil bath / /

MusicGroup

Flow / /

NaturalFeature

Lower Cotton Valley / /

Organization

SPE Program Committee / Society of Petroleum Engineers Inc. / Texas A&M University / Society of Petroleum Engineers / Texas Tech University / /

Person

Water Kelvin / /

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Position

author / RT / representative / General / Marshall / /

Product

High-Pressure Mercury Injection / Nokia MD-4 Speakers / High Pressure Mercury Injection / /

ProvinceOrState

Alberta / Texas / New York / /

RadioStation

AW AM / /

Region

North Louisiana / East Texas / /

Technology

2002 SPE Gas Technology / 117-pressure-step protocol / completed using a 117-pressure-step protocol / /

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