Unconventional/complex reservoirs
Beetaloo Energy and Halliburton have signed an MOU to advance Beetaloo Digital, a proposed gas-powered AI data center hub in Australia’s Northern Territory that could create a new long-term market for Beetaloo Basin gas.
The ultrasonic wellbore imaging firm is being taken over by Blackstone, the world's largest alternative asset manager.
This paper presents an autonomous, data-driven solution designed specifically for intermittent well optimization.
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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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Chevron and Halliburton describe how they built and deployed the fully autonomous closed-loop fracturing system that enables subsurface-driven optimization.
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The deal adds physics-based reservoir modeling and real-time decision workflows to SLB’s digital portfolio.
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Weatherford CEO Girish K. Saligram said the acquisition will bolster Weatherford’s completions offerings and unconventional reservoir capabilities.
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This paper details a new enhanced oil recovery method piloted successfully by several operators in the Bakken and recently implemented in the Midland play of the Permian Basin.
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This paper reviews fracturing-program design, completion technology, real-time data collection, data integration, and lessons learned for the Pikka development on the North Slope of Alaska.
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This paper presents a case study of a tool-free fishbone fracture stimulation technology using sand jetting and acidizing in openhole wells, providing a technical solution for low-permeability and complex-lithology carbonate reservoirs in the Middle East.
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New insights from Chevron, Occidental Petroleum, and others at the SPE Improved Oil Recovery Conference highlight the different paths companies are using to squeeze more out of tight rocks.
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This paper reviews existing literature, the operator’s records, service-company data, and simulation studies to assess the risk of using seawater in carbonate acidizing.
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This study provides the first experimental evidence that in-situ combustion is feasible in Permian shale under realistic rock–fluid conditions.