Testing page for app
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This paper introduces a new carbon dioxide (CO2) -hybrid fracturing-fluid design that intends to improve production from ultratight reservoirs and reduces freshwater usage.
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The objective of this paper is to develop and demonstrate an efficient work flow that will help stakeholders make better decisions in the area of completion planning.
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The combination of technology advances and world politics results in oil supply-and-demand cycles that have occurred repeatedly over the past 100 years and that have affected and will continue to affect our careers.
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Unconventional resources include coalbed methane, tight gas, and source-rock-based (often shale-based) reservoirs.
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This paper will discuss the hydraulic-fracturing-stimulation design, execution, and evaluation for the first successful proppant-fracturing treatment in an unconventional carbonate source rock in Saudi Arabia.
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A production-optimization strategy of an artificial-lift system resulted in the mitigation of challenges related to reservoir heterogeneities and completion design.
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History shows that technology adapts to the economic conditions. What is the optimum technology in a high-price environment is not optimum for a low-price scenario.
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"Gas Scrubber Design and Validation for Robust Separation Duty" is the title of a special session planned by the Separations Technology Technical Section.
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This paper provides a benchmarking of different cryogenic tanks in terms of operation life and type of containment (single- vs. double-containment tanks) in the LNG industry. The different options adopted to recertify these tanks are covered.
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For the past several years, automated drilling has promised to deliver major improvements in drilling performance. But the technology is facing new obstacles that might affect its progress and commercialization.