Onshore/Offshore Facilities
The contract will cover the design and manufacturing of tree systems, flexible flowlines, a manifold, and controls, as well as installation of the subsea production system.
DTEK has delivered its first US-sourced LNG shipment through Lithuania to supply Ukraine and neighboring countries this winter.
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As the boom of the 1970s and 1980s makes way for the first tranche of major decommissioning projects, the market for abandonment and decommissioning has grown over the past 5 years. To deliver these projects in a safe and economic way, decommissioning needs to be accepted as a serious challenge.
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Mexico’s long awaited deepwater auction saw 8 out of 10 blocks awarded but there remains plenty of work to be done before activity ramps up, including finalizing regulatory rules, upgrading ports, and optimizing the bid rules for future auctions.
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This month's feature on Offshore Facilities is drawn from more than 200 papers presented at SPE events over the past year.
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Developing a well-specific subsea-capping contingency plan involves assessing the feasibility of deploying a capping stack from a floating vessel, determining the weight and stability, and performing dynamic-flow simulations of closing the capping stack outlets.
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Current methods for external inspection of floating assets on station use divers or remotely operated vehicles (ROVs), but these methods incur high safety, people-on-board (POB), and cost penalties. New methods to eliminate diving are being developed.
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This paper describes a split-process FLNG design where primary production and gas-treatment functions are provided on a host platform while liquefaction occurs on a separate vessel.
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A closer look at recent unmanned aerial vehicle (UAV) regulations and sensor technologies shows the areas in which they could have a major impact on oil and gas projects in the future.
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In this tenth article of the series, the author focuses primarily on specific operational elements of troubleshooting rather than the mechanical design of the separator.
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The understanding of solid-particle flow regimes in pipelines for any operational conditions is important for identifying the nature of particle interaction and movement. In this paper, a comprehensive analysis of solid-particle flow regimes in stratified flow in a horizontal pipeline is presented.
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Our industry is governed by rules that require cleanup and closure of oil and gas facilities after they cease to produce. Unlike a capital project, decommissioning is not something that you can choose to do or not to do.