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Numerical simulation of CO2 huff-n-puff in complex fracture networks of unconventional liquid reservoirs

机译:非常规储层复杂裂缝网络中CO 2吞吐的数值模拟

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摘要

Horizontal drilling and hydraulic fracturing produce Unconventional Liquid Reservoirs (ULRs) economically. One of the characteristics of the ULRs is high production declining rate, and thus enhanced oil recovery techniques such as Huff-n-Puff will ensue. In addition, the existence of complex fracture network has been proven by both field and simulation work. This study investigated the potential of CO2 huff-n-puff in ULRs with complex fracture networks. Two fracture characterization techniques for complex fracture network such as fractal-based, and microseismic-based were applied to reduce uncertainties of fracture networks and thus improve the accuracy of simulation input. In order to study complex CO2 recovery mechanism, lab-measured data was upscaled to the field-scale, and then used for evaluating production performance of a simple fracture network. Detailed sensitivity analysis showed that diffusion in the field scale is negligible compared with other recovery mechanisms such as oil swelling, gas expansion, viscosity reduction, etc. The following comparison between dual continuum and the explicit fracture modeling approaches highlights the importance of heterogeneity due to the explicit fractures. Dual continuum models yields less accurate pressure behavior than explicit discrete fracture models even though production behavior could be history matched. (C) 2016 Elsevier B.V. All rights reserved.
机译:水平钻井和水力压裂可以经济地生产非常规液体储层(ULR)。 ULR的特征之一是高产量下降率,因此将需要采用诸如Huff-n-Puff之类的强化采油技术。此外,现场和模拟工作都证明了复杂裂缝网络的存在。这项研究调查了具有复杂裂缝网络的超高压反应堆中CO2吞吐的潜力。为了降低裂缝网络的不确定性,应用了复杂的裂缝网络的两种裂缝表征技术(例如基于分形的裂缝和基于微震的裂缝),从而提高了模拟输入的准确性。为了研究复杂的二氧化碳采收机理,将实验室测量的数据放大到现场规模,然后用于评估简单裂缝网络的生产性能。详细的敏感性分析表明,与其他恢复机制(例如油溶胀,气体膨胀,黏度降低等)相比,油田规模的扩散可以忽略不计。以下对偶连续体和显式裂缝建模方法的比较凸显了非均质性的重要性,因为明确的骨折。尽管生产行为可以历史匹配,但双重连续介质模型产生的压力行为比显式离散裂缝模型要精确。 (C)2016 Elsevier B.V.保留所有权利。

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