Baker Hughes
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Leading energy technology companies unite to unlock efficiencies and increase reserve recoveries using digital advances.
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The agreement seeks to accelerate the deployment of new technology to produce green and low-carbon hydrogen and graphene.
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This paper describes the building of a geomechanical model for an offshore field that integrated drilling, geology, petrophysics, and reservoir data to play a major role in the drillability and deliverability of the reservoir.
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The two LM9000-driven trains are part of the ZLNG nearshore floating LNG project.
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The coupled geomechanical and dynamic flow simulation work flow described in this paper relies on a multidisciplinary approach to meet future peak gas demands and support clean-energy initiatives.
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This paper compiles recommendations from a broad range of sources into a single document to aid future intelligent-completion installations and operations.
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The authors of this paper define a work flow that constrains solutions that match models and field observations and obtains a more-representative model for forecasting and optimizing fracture behavior.
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The contract was awarded by Bechtel to Baker Hughes for project's key liquefaction systems.
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The two companies have entered a commercial agreement in which Baker Hughes will use Oqton’s software to boost its 3D printing capabilities.
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Deployment of Mosaic DAC pilot units are envisaged for a pair of HIF eFuel facilities.