PHASE CONTROL FOR SUBTERRANEAN CARBON CAPTURE, UTILIZATION AND STORAGE

Injection into a subterranean formation is optimized using a computation model to optimize injection. An optimization objective is to maximize the cumulative fluid mass rates injection that span over the remaining life of the field, while maintaining a dense or supercritical phase and operating with...

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Main Authors JOUBRAN, Jonathon N, ALLEN, Clifford, PRAKASA, Bona
Format Patent
LanguageEnglish
French
Published 07.03.2024
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Abstract Injection into a subterranean formation is optimized using a computation model to optimize injection. An optimization objective is to maximize the cumulative fluid mass rates injection that span over the remaining life of the field, while maintaining a dense or supercritical phase and operating within the equipment operational parameters. The phase at each location may be determined based on pressure and temperature, and flow is dynamically adjusted to maintain a phase having at least a threshold density of the carbon dioxide injected at each injection location. L'injection dans une formation souterraine est optimisée à l'aide d'un modèle de calcul pour optimiser une injection. Un objectif d'optimisation est de maximiser l'injection de taux de masse de fluide cumulative qui s'étend sur la durée de vie restante du champ, tout en maintenant une phase dense ou supercritique et fonctionnant à l'intérieur des paramètres de fonctionnement de l'équipement. La phase à chaque emplacement peut être déterminée sur la base de la pression et de la température, et l'écoulement est ajusté de manière dynamique pour maintenir une phase ayant au moins une densité seuil du dioxyde de carbone injecté à chaque emplacement d'injection.
AbstractList Injection into a subterranean formation is optimized using a computation model to optimize injection. An optimization objective is to maximize the cumulative fluid mass rates injection that span over the remaining life of the field, while maintaining a dense or supercritical phase and operating within the equipment operational parameters. The phase at each location may be determined based on pressure and temperature, and flow is dynamically adjusted to maintain a phase having at least a threshold density of the carbon dioxide injected at each injection location. L'injection dans une formation souterraine est optimisée à l'aide d'un modèle de calcul pour optimiser une injection. Un objectif d'optimisation est de maximiser l'injection de taux de masse de fluide cumulative qui s'étend sur la durée de vie restante du champ, tout en maintenant une phase dense ou supercritique et fonctionnant à l'intérieur des paramètres de fonctionnement de l'équipement. La phase à chaque emplacement peut être déterminée sur la base de la pression et de la température, et l'écoulement est ajusté de manière dynamique pour maintenir une phase ayant au moins une densité seuil du dioxyde de carbone injecté à chaque emplacement d'injection.
Author ALLEN, Clifford
JOUBRAN, Jonathon N
PRAKASA, Bona
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DocumentTitleAlternate COMMANDE DE PHASE POUR CAPTURE, UTILISATION ET STOCKAGE DE CARBONE SOUTERRAIN
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Snippet Injection into a subterranean formation is optimized using a computation model to optimize injection. An optimization objective is to maximize the cumulative...
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SourceType Open Access Repository
SubjectTerms EARTH DRILLING
EARTH DRILLING, e.g. DEEP DRILLING
FIXED CONSTRUCTIONS
MINING
OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR ASLURRY OF MINERALS FROM WELLS
Title PHASE CONTROL FOR SUBTERRANEAN CARBON CAPTURE, UTILIZATION AND STORAGE
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