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Integrated Methods for Identifying Opportunities to Efficiently Develop Heavy Oil in the Block 192 - Peru

机译:识别机会在192年秘鲁核算中有效地发展重油的综合方法

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Heavy oil production presents tremendous challenges in subsurface development, production wells, and surface transport. Therefore, highly efficient transportation calls for innovative engineering processes to facilitate the transport from subsurface to downstream. In Block 192- Peru, previous production experience indicated that mixing light oil at the well production manifold to heavy oil stream was a feasible option. However, this option strongly depends on the availability of light oil. The aim of this study is to present alternatives to improve heavy oil transportation performance in the block 192. Results of a fundamental study conducted on the heavy oil transportation performance in Jibaro, Jibarito and San Jacinto fields are presented herein where multiple possibilities are evaluated to reduce the ratio of light oil per barrel of heavy oil production (i.e. to increase the efficiency of the diluent). This study provides guidelines to select one of the three following methods: diluent injection, emulsion injection or reservoir-based technology. Previous operators performed extensive reservoir characterization and simulation modeling which led to recovering over 200 million barrels of heavy oil (up to July 2015) through Vivian sands. Therefore, this confirmed the suitability of introducing new methods to feasible transport and sell heavy oil. Jibaro, Jibarito and San Jacinto fields are used in this study due to their significant heavy oil reserves. The complexity of these fields includes high water cut production, Heli transportable logistics and high cost of produced oil. The first method proposed in this study consists of injecting a diluent in the extraction stream of heavy oil up. The second method uses emulsion water to transport high viscous oil. The third method involves applying a technology in the extraction process to reduce the viscosity of heavy oil, and in-situ upgrade the heavy oil up to sales specifications with a consideration of long distance between fields. This study concludes that a conceptual engineering and a selection of a compatible diluent and solvent are critical. Finally, environmental permitting increases the complexity of any project in the area and the possibility to introduce new technology.
机译:大石油生产在地下开发,生产井和表面运输方面具有巨大的挑战。因此,高效的交通呼吁进行创新的工程流程,以促进从地下到下游的运输。在192秘秘鲁的情况下,以前的生产经验表明,在井生产歧管到重油流的混合轻油是可行的选择。然而,这种选择强烈取决于轻油的可用性。本研究的目的是展示在192年框内提高重油运输性能的替代方案。在这里提出了对Jibaro,Jibarito和San Jacinto领域的重油输送性能进行的基本研究的结果,其中可以评估多种可能性以减少每桶重油的轻质油比例(即提高稀释剂的效率)。本研究提供了选择以下三种方法之一的指导方针:稀释剂注射,乳液注射或基于储层技术。以前的运营商进行了广泛的储层表征和仿真建模,导致通过Vivian Sands恢复超过2亿桶重油(2015年7月)。因此,这证实了将新方法引入可行运输和销售重油的适用性。由于其显着的重油储量,在这项研究中使用了Jibaro,Jibarito和San Jacinto字段。这些领域的复杂性包括高水切割生产,Heli可运输物流和生产的油的高成本。本研究中提出的第一种方法包括在萃取物流中注射稀释剂。第二种方法使用乳液水传输高粘性油。第三种方法涉及在提取过程中应用技术,以减少重油的粘度,并且原位将重油升级到销售规范的销售规范,考虑到田地之间的长距离。该研究得出结论,概念工程和兼容稀释剂和溶剂的选择是至关重要的。最后,环境允许增加该地区任何项目的复杂性以及推出新技术的可能性。

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