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Infill wells assisted in-situ combustion following SAGD process in extra-heavy oil reservoirs

机译:填充井在超重油箱中的SAGD过程后辅助原位燃烧

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The steam oil ratio (SOR) usually increases during the later steam-assisted gravity drainage (SAGD) process, resulting in a decrease in economic benefits and an increase of oil remaining in the wedge zones. To extract wedge zone oil efficiently and economically, this study proposed a method, namely infill wells assisted in-situ combustion (ISC) following SAGD, which takes advantages of SAGD and ISC in sequence by proper well patterns. The requirements for successful ISC following SAGD were discussed, including fuel supply, thermal communication, high temperature oxidation (HTO) kinetics, and the proper time to convert to ISC and the proper well patterns for ISC. The potential method was studied systematically by both physical and numerical simulations based on parameters of a typical extra-heavy oil reservoir in China. The results show that SAGD can be converted to ISC when the steam chamber extends to the edge of SAGD well pattern with infill wells in the middle of well pair as air injectors. It is shown that infill wells assisted ISC following SAGD method has great potential for enhancing oil recovery in extra-heavy oil reservoirs and also presents good economic benefit and operability due to its high oil efficiency. With the well pattern recommended, the oil recovery and economic benefit can be improved by 12.8% and 26.4%, respectively, compared to continued SAGD process. This will provide important guidance for the development in extra-heavy oil reservoirs worldwide.
机译:蒸汽油比(SOR)通常在后来的蒸汽辅助重力排水(SAGD)过程中增加,导致经济效益的降低和楔形区域中残留的油的增加。本研究提出了一种有效和经济地提取楔形区油,即在SAGD之后辅助原位燃烧(ISC)的方法,即通过适当的井图案依次采用SAGD和ISC的优点。讨论了SAGD之后成功的ISC的要求,包括燃料供应,热通信,高温氧化(HTO)动力学,以及转换为ISC的适当时间和ISC的适当井图案。基于中国典型超重油箱参数的物理和数值模拟系统地系统地研究了潜在方法。结果表明,当蒸汽室延伸到SAGD井图案的边缘时,SAGD可以转换为ISC,与井副的井阱作为空气喷射器。结果表明,SAGD方法后辅助井辅助ISC具有巨大的潜力,可提高超重的油藏中的储油储存,并且由于其高油效率,也具有良好的经济效益和可操作性。与持续的SAGD过程相比,通过建议的井模式,分别可以提高12.8%和26.4%,分别提高12.8%和26.4%。这将为全球超重油藏开发提供重要指导。

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