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Shale Barrier Failure Strategies in Heterogeneous SAGD Reservoirs: A Case Study

机译:异构耻辱水库的页岩屏障失效策略:一个案例研究

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In Xinjiang, China, a huge volume of heavy oil deposits is not commercially developed yet due to the high in-situ oil viscosity that is higher than 100,000 to 1,000,000+ cp and the strong reservoir heterogeneity. Two SAGD pilot tests with 11 wellpairs in total have been carried out since 2008 while the extensively distribution of shale barriers result in the poor SAGD steam chamber conformance, low production rate and high SOR. This paper presents the workflow to break shale barriers to improve the steam chamber development along horizontal section, to reduce the SOR and to enhance the economic performance. The first step of the workflow is to select representative core and shale barrier samples and quantify the geomechanic data by high-pressure-high temperature dilation and shale barrier failure experiments. Meanwhile, the geologic model is built taking into account geological uncertainties of the reservoir and the core analysis results. And then, a small set of SAGD wellpair models are selected as the typical wellpair models by classifying different patterns of shale barriers distribution along horizontal section. Finally, the upscaled thermal reservoir models with geomechanics models using the data acquired by geomechanic experiments are investigated to model and optimize operation strategies for dynamic fracturing and shale barrier failure during SAGD phase. The research reveals that the high-pressure CSS is an effective method to break the shale barrier distributed between the horizontal segments of the producer and the injector, which has been verified by field experience and the numerical simulation. It is forecasted that the case without HP-CSS will have the steam chamber growth at 50% percent of horizontal segment, which is 40% less than the case CSS. The ultimate oil recovery factor is 34.54%, which is 16.31% less than the case with HP-CSS; and the cumulative oil/steam ratio is 0.175, ,which is 14.5% less than the case with HP-CSS, encouraging SAGD performance after HP-CSS shows a better economic performance, which is worthwhile to carry out and also has a significant guidance for the similar SAGD reservoirs to improve the performance.
机译:在新疆,中国的大量重油沉积物尚未商业发展尚未由于高于100,000至1,000,000+ CP和强大的储层异质性的高于100,000升的石油粘度。自2008年以来,两次具有11个井皮的两个SAGD试验试验,同时,页岩屏障的广泛分配导致差的SAGD蒸汽室一致性,低生产率和高SOR。本文介绍了打破页岩障碍的工作流程,以改善水平部分的蒸汽室开发,以减少SOR,提高经济性能。工作流程的第一步是通过高压高温扩张和页岩屏障失效实验来选择代表核心和页岩屏障样本并量化地质力学数据。同时,建立了地质模型,考虑了水库的地质不确定性和核心分析结果。然后,通过分类沿水平部分的不同图案分配不同模式,选择一小组SAGD Wellpair模型作为典型的Wellpair模型。最后,研究了使用地质力学实验所获取的数据的具有地质力学模型的上部热容纳模型,以模拟和优化SAGD相期间动态压裂和页岩屏障失效的操作策略。该研究表明,高压CSS是打破在生产者的水平段和喷射器之间分布的页岩屏障的有效方法,该喷射器已经通过现场经验和数值模拟验证。预计没有HP-CSS的情况将使蒸汽室的增长以50%的水平段的增长,而不是比CSS少40%。最终的石油回收率为34.54%,比HP-CSS的案例少16.31%;累积油/蒸汽比率为0.175,比HP-CSS的案例少14.5%,令人鼓舞的HP-CSS显示出更好的经济表现,这是一个值得开展的并且也有重大指导类似的SAGD水库提高性能。

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