Nie Ren-Shi, Jiang Qingqiang, Wang Yimin, Liu Jingcheng, Zhan Jie, Zhang Letian, Li Yuanguang, Shen Guotao, Xu Minghang
State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu, 610500, Sichuan, China.
Exploration and Development Research Institute, Jianghan Oilfield Company, Sinopec, Wuhan, 430223, Hubei, China.
Sci Rep. 2024 Apr 30;14(1):9959. doi: 10.1038/s41598-024-60747-7.
Steam-assisted gravity drainage (SAGD) is an efficient thermal recovery technique for oil sands and extra heavy oil exploitation. The development of steam chamber goes through multi-stage physical processes for SAGD production in a heavy oil reservoir with an interlayer. In this study, considering the situation that an interlayer is located directly above a pair of horizontal wells, we analyzed the whole process of steam chamber development. We divided the whole process into stages I-V, which are the first rising stage, the first lateral expansion stage, the second rising stage, the second lateral expansion stage and the confinement stage, respectively. Particularly, we further divided stage II into 2 periods and stage IV into 3 periods. These stages and periods can help us understand the development process of steam chamber dominated by an interlayer more profoundly. Based on the divided stages and periods, we established different models of SAGD production by assuming different geometric shapes of steam chamber in different stages and periods. Oval shape was assumed in stages I and III, and inverse triangle shape was hypothesized in stages II, IV and V. The formulas of the front distance of steam chamber and the oil production rate of SAGD were deduced from the established models for different development stages. At the end, we performed two example applications to SAGD production in heavy oil reservoirs with an interlayer. The real oil production rates were matched very well with the theoretical oil production rates calculated by the deduced formulas, which implies the multi-stage development model of steam chamber is of reliability and utility.
蒸汽辅助重力泄油(SAGD)是一种用于油砂和超稠油开采的高效热采技术。对于存在夹层的稠油油藏,蒸汽腔的发育在SAGD生产过程中经历多个阶段的物理过程。在本研究中,考虑夹层直接位于一对水平井上方的情况,我们分析了蒸汽腔发育的全过程。我们将整个过程分为I - V阶段,分别为首次上升阶段、首次横向扩展阶段、第二次上升阶段、第二次横向扩展阶段和封闭阶段。特别地,我们将阶段II进一步分为2个时期,阶段IV分为3个时期。这些阶段和时期有助于我们更深刻地理解由夹层主导的蒸汽腔发育过程。基于划分的阶段和时期,我们通过假设不同阶段和时期蒸汽腔的不同几何形状,建立了不同的SAGD生产模型。在阶段I和III假设为椭圆形,在阶段II、IV和V假设为倒三角形。从建立的不同开发阶段模型中推导出蒸汽腔前缘距离和SAGD产油率的公式。最后,我们对存在夹层的稠油油藏的SAGD生产进行了两个实例应用。实际产油率与由推导公式计算出的理论产油率匹配得非常好,这意味着蒸汽腔的多阶段发育模型具有可靠性和实用性。