subsea
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This paper focuses on the applicability of subsea processing technology employing multiphase pumps to develop marginal fields commercially. Analytical methods were used to evaluate the pumps, and the results were validated through case studies in specific fields.
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Record-setting megaprojects are driving innovation at the installation and subsea construction firm.
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The global subsea vessels market is expected to reach more than USD 100 billion in the next five years, with demand up by 23%.
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This paper presents the results of tests conducted to design a fast-breaking gelled fluid for a debris-removal operation in a long, large-diameter subsea pipeline in the Asia Pacific region. where traditional pigging was not an option.
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Complexity is now a day-to-day parameter in the world of the subsea engineer. We are not developing these systems for fun; huge value is associated with maximizing recovery from these deep, remote oil and gas reservoirs.
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Facilities engineering has grown with the industry’s advance into deep water and the development of complex subsea systems to produce the resources found there.
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Asset integrity management encompasses the design, operation, and maintenance of an asset to preserve its integrity at an acceptable level of risk throughout its operating life.
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The OTC 2012 Spotlight on Technology awards highlighted subsea separation and boosting and subsea heavy oil and water separation technologies in deep water.
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The selection criteria for multiphase boosting options remain somewhat subjective. A comprehensive literature review into the working principles of the major pump types identified the intrinsic advantages and limitations of each technology for subsea and downhole applications.
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