Mature fields
Equinor and its partners’ investment in the Troll West Increased Gas Recovery North (TWIN) project aims to unlock around 11 Bcm of additional natural gas from the Troll field, with first production targeted as early as 2028.
In the fourth development phase, a planned tieback would connect resources from two North Sea discoveries to existing infrastructure at the Johan Sverdrup field, pending project sanction.
Production delivered by the subsea artificial lift system will equal that obtained by drilling two new wells, according to BP.
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These papers exemplify value creation at each stage of hydrocarbon maturation and should prompt practitioners to don their thinking caps.
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Vår Energi and partners have officially sanctioned the Previously Produced Fields Project in the Greater Ekofisk Area. The redevelopment is expected to add high-value barrels starting in 2028, extending the production life of one of Norway’s key offshore regions.
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BP’s new electric gas compression platform at Shah Deniz, Azerbaijan’s largest natural gas producer, is expected to sustain exports to Europe even as the field enters decline.
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ExxonMobil joins BP, Chevron, and TotalEnergies in greenlighting new investment projects in Iraq in 2025 as the government targets oil production of 6 million B/D by 2029.
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Intelligent completions could improve many of the world’s oil and gas wells, but not all are suited to the technology. There is another option.
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This paper addresses how close collaboration has enabled the development of a robust and cost-efficient solution for the Ormen Lange project by using carefully selected technology elements and an accelerated qualification process to mature them.
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As Africa’s top oil producer, Libya is ramping up momentum—offering 22 exploration areas and welcoming BP back to Tripoli with a major deal.
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Equinor and Shell plan to launch the joint venture—initially announced in late 2024—by the end of 2025, pending regulatory approvals.
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Secondary and tertiary efforts are critical for sustaining the productive lives of unconventional plays.
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This study leverages oil-fingerprinting technology and geochemical data to evaluate the fluid connectivity between a main field and its stepout wells.