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首页> 外文期刊>Management Systems in Production Engineering >Potential Application of CO2 for Enhanced Condensate Recovery Combined with Geological Storage in the Depleted Gas-Condensate Reservoirs
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Potential Application of CO2 for Enhanced Condensate Recovery Combined with Geological Storage in the Depleted Gas-Condensate Reservoirs

机译:CO2潜在应用于增强的冷凝物回收,结合耗尽气凝胶储层中的地质储存

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摘要

CO2 emissions are considered to be the main contributor to global warming and climate change. One of the ways reducing the emissions to atmosphere is a proper capture and further geological storage of the carbon dioxide. In the oil industry, CO2 is used as one of the injection agents to displace oil and enhance its recovery. Due to the low multi-contact miscibility pressure between CO2 and hydrocarbons, fully miscible condition is quickly reached, leading to efficient displacement and high recovery factors. The utilization of the depleted gas fields for CO2 storage, however, is considered as the option that is more expensive compared to oil field, since the enhanced recovery of gas with CO2 is not effective. For this reason, our study considers the potential use of CO2 EOR in depleted gas-condensate fields. This potential is evaluated by performing numerical simulations for the typical-size gascondensate reservoirs with no active aquifer, in order to estimate both the storage efficiency and the additional oil recovery from condensed C5+ hydrocarbon fractions, that otherwise will be never recovered and lost in the reservoir. Obtained results indicate significant potential for CO2 storage and additional condensate recovery from the typical gas-condensate field of Eastern Ukraine.
机译:二氧化碳排放被认为是全球变暖和气候变化的主要贡献者。减少对大气排放的途径之一是二氧化碳的适当捕获和进一步的地质储存。在石油工业中,CO2用作注射剂中的一种,以取代油并增强其恢复。由于CO2和烃之间的多触点混溶性压力低,迅速达到了完全混溶的条件,导致有效的位移和高回收因子。然而,用于CO2储存的耗尽气田的利用被认为是与油田相比更昂贵的选项,因为与CO2的气体增强恢复无效。出于这个原因,我们的研究考虑了CO2 EOR在耗尽的气体冷凝物领域。通过对没有活性含水层的典型型汽化储存器进行数值模拟来评估该电位,以估计从冷凝的C5 +烃类分数的储存效率和额外的油回收,否则将永远不会在储层中恢复和丢失。得到的结果表明二氧化碳储存的显着潜力以及从乌克兰东部典型的气凝胶场中储存的额外冷凝水。

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