Onshore/Offshore Facilities
This paper presents a flexible, highly cost- and energy-efficient method of gas separation and CO₂ capture from many different gas mixtures with a large range of CO₂ concentrations.
This work introduces a novel predictive methodology combining historical metocean data with real-time riser analysis for shallow water dynamically positioned rig operations.
This paper introduces channel stacking, a novel and efficient methodology designed to significantly improve optical gas imaging-based leak detection.
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This paper describes the successful deployment of flexible coiled tubing technology in an oil-producing well of the offshore Frade field in Brazil’s Campos Basin.
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This article from the SPE Hydrogen Technical Section (H2TS) analyzes career opportunities and the capabilities professionals will need as the hydrogen sector continues to take shape.
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Expected to be commissioned in 2027, the new pipeline will double the UAE's current capacity of 1.8 million B/D of crude that can be transported beyond the contested waterway.
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Analysis from Wood Mackenzie warns that a prolonged closure of the critical waterway would have lasting effects on the global economy and Middle East supply capacity.
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Caturus Energy’s platform integrates upstream assets from the Haynesville and East Texas basins with downstream liquefaction and export terminal facilities on Louisiana’s Gulf Coast.
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While often associated with smaller discoveries, subsea tiebacks are playing a growing role in contributing to the broader energy mix.
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Equinor generated its first revenue from the Adura joint venture with Shell, formed in late 2025, highlighting strong early cash flow from key UK fields including Mariner and Buzzard.
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This case study from Italian technology developer Sentris highlights the effectiveness of using sensors during pigging operations to optimize cleaning efficiency.
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The authors reach conclusions that the industry should define a standard testing method to improve swelling performance, including validation of repeatability, to complement existing guidelines.
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This paper presents the development of an advanced simulation tool aimed at providing a better understanding of the complex fluid-displacement phenomena present in well-cementing processes.