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The authors of this paper present an advanced dual-porosity, dual-permeability (A-DPDK) work flow that leverages benefits of discrete fracture and DPDK modeling approaches.
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The authors of this paper describe an approach in which all available technologies are combined to improve understanding of reservoir depositional environments.
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This paper presents the proof of concept of artificial-intelligence-based well-integrity monitoring for gas lift, natural flow, and water-injector wells.
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The authors of this paper describe a project in which Raleigh frequency-shift distributed strain sensing monitored during production in a far-field observation well was translated to an estimated pressure profile.
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The authors of this paper present a machine-learning-based solution that predicts pertinent gas-injection studies from known fluid properties such as fluid composition and black-oil properties.
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This study presents a novel approach to screen thermally stable surfactants at high pressures and high temperatures for the explicit purpose of wettability alteration in the operator’s Eagle Ford acreage.
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The authors of this paper describe a project aimed at automating the task of cuttings descriptions with machine-learning and artificial-intelligence techniques, in terms of both lithology identification and quantitative estimation of lithology abundances.
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The increasing demand for critical minerals—the building blocks of an electrified future—is creating opportunities for the oil and gas industry to apply its extensive knowledge, tools, and data to help meet the demand.
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Find out what made the list of big technology breakthroughs that have shaped the oil and gas industry over the past quarter century.
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Highlights of innovations in fracturing, drilling, and reservoir engineering include mysterious gummy bears, horseshoe-shaped wells, and automated rigs.
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In this episode and transcript, Terry Palisch is joined by Karen Olson, the SPE technical director for completions, to discuss how SPE can help us collaborate more on a global level through our technical sections.
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The “Western Haynesville” boasts big gas IPs with potential running room.
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