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 combini ang historical metocean data with real-time riser analysis for shallow water dynamically positioned (DP) rig operations, addressing a gap in industry literature. The integrated approach of predictive nonproductive-time (NPT) estimation, real-time monitoring validation, and structured decision protocols for cr…
This paper documents the testing, integration, and field deployment of a metal expandable packer used as an openhole toe isolation plug in a deepwater well under high-pressure, high-temperature conditions.
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Marine contractor also approves the construction of a new heavy-transport ship.
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Nitzana will enable Israel to double gas exports to Egypt from the giant Leviathan gas field in the Eastern Mediterranean.
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Train 4 is expected to add 6 million tonnes per year of capacity to the South Texas liquefied natural gas project when it goes online in 2030.
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Louisiana-based project will use operator’s Optimized Cascade process to turn feed gas into LNG.
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Updates about global exploration and production activities and developments.
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The offshore industry is actively embracing a digital-first, low-carbon future, supported by scalable demonstrators, intelligent systems, and integrated engineering approaches now entering precommercial or early-deployment stages.
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This paper reviews the motivation and development of response-based forecasting from the perspective of the authors, reviewing examples and processes that have served as validation and led to modeling refinement.
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This study contributes to enhancing the understanding of scale-inhibitor retention in rock formations.
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This paper compares traditional welded techniques, such as above-water repair methods and underwater hyperbaric welding, with the novel options offered by subsea connectors purposely developed for corrosion-resistant-alloy-clad pipelines.
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This paper introduces a technology for offshore pipeline inspection centered on an autonomous robotic system equipped with underwater computer vision and edge-computing capabilities.