Unconventional/complex reservoirs
This paper aims to establish a set of best practices for generating particle-size-distribution data from core samples.
This paper discusses the successful execution of two openhole gravel-pack completions in two Gulf of Mexico fields with depleted reservoirs.
By integrating experimental and mathematical modeling approaches, this work aims to advance the understanding of sand-detachment dynamics and formation instability under varying saturation conditions.
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This paper adds to ongoing research in hydrogen storage, focusing on efficient extraction of hydrogen to be stored potentially in depleted unconventional formations.
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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 develop an integrated technical approach that can be used to unlock one of the largest undeveloped resources in an operator’s portfolio.
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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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The “Western Haynesville” boasts big gas IPs with potential running room.
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An engineered approach to fracture growth in hydraulic fracturing highlights the successful execution of H2S prevention strategies in North Dakota’s Williston Basin.
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A recent wave of megadeals is weighing on the mind of many oil and gas executives in Texas, New Mexico, and Louisiana.
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The deal will quadruple Tokyo Gas' natural gas production volumes from the Haynesville Shale.
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Houston-based Occidental said that one reason it is buying private producer CrownRock is to gain more access to the deep, relatively untapped Barnett formation.
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A case study presented at ATCE took medical science to a new low—into the depths of the Permian Basin for application to downhole reservoir drainage diagnostics.