Reservoir
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The deal adds over 1,000 potential drilling locations and almost doubles oil production for Houston-based Magnolia.
Average output reached 13.6 million BOPD, extending a period of sustained growth that has kept the US at the forefront of global oil production.
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This year’s selected papers showcase meaningful advances across condensate‑rich tight gas, tight sandstone, and coalbed methane reservoirs, each contributing new tools for improving predictability and field-development efficiency.
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This paper presents a novel approach to predict reservoir porosity by conditioning seismic data, calibrating seismic impedance inversion, and tailoring rock-physics analysis.
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This study aims to systematically assess casing integrity and corrosion risks associated with CO2 injection in oil-recovery operations.
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This paper presents findings reinforcing the argument that acid fracturing is a strong alternative stimulation method to improve productivity in the Austin Chalk formation.
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The current challenge in reservoir simulation extends beyond developing better models; it entails creating solutions that are faster, more responsive, and genuinely instrumental in guiding decision-making. The papers selected this year clearly represent this evolution.
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This paper aims to assess the effectiveness of using advanced integrated production-data-analysis techniques for condensate-rich tight gas fields.
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This study applies Monte Carlo simulation and an XGBoost regression model to assess the influence of various formations, geologic provinces, tectonic-plate types, and boundary conditions on hydrogen concentrations.
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The next wave of unconventional growth will likely come from basins in Argentina, the Middle East, Australia, and elsewhere, fueled by expertise gained from shale plays in North America.
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Industry experts at URTeC assessed more than a decade of unconventional growth while discussing where productivity gains will come from next.
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The technology has passed its first phase of qualification, with 84 nodes placed on the seafloor at a depth of 2,000 m to acquire 4D seismic data in the pre-salt Santos Basin.