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Super-Critical CO_2 Weakening Effect on Strength of Tight Sandstone with a Weak Plane: experimental results and causes

机译:具有弱平面的紧密砂岩强度的超重关键效果:实验结果与原因

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As a representative technology of non-aqueous fracturing, super-critical carbon dioxide(SC-C02) fracturing has become a research focus in the development of tight reservoir. The weak plane is widely distributed in the tight reservoir, such as natural fractures and bedding planes, however the effects of SC-CO_2 on reservoir rocks with weak planes are scarcely found in publications. Two groups of samples with the same angle of the weak plane were used in experimental work. The first group was treated in a closed container filled with SC-CO_2 for 30 days, and Brazilian and triaxial compression tests with SC-CO_2 were performed, and the other group was taken as control experiment without any treatment. In both groups, Acoustic Emission (AE) was used to record the fracture process. The tensile and triaxial compressive strengths of SC-CO_2 were about 60% and 80% of those of untreated samples. It was found that SC-CO_2 advanced the initial stage of the damage, and the damage extension stage lasted for an elongated time. The authors revealed the mechanism of SC-CO_2 affecting the weak plane from the perspective of meso-damage mechanics. This research will be beneficial to understanding the fracturing behavior of the tight sandstone with weak planes during SC-CO_2 fracturing.
机译:作为非水压裂的代表性技术,超重临界二氧化碳(SC-C02)压裂已成为紧密水库开发的研究重点。弱平面广泛分布在紧的储层中,例如自然骨折和床上用品平面,但在出版物中几乎没有发现SC-CO_2对水库岩石的影响。实验工作中使用两组具有相同角度的弱平面相同的样品。第一组在填充有SC-Co_2的封闭容器中处理30天,并进行巴西和三轴压缩试验,进行SC-CO_2,并将其它组作为对照实验,无需任何处理。在这两组中,使用声发射(AE)来记录裂缝过程。 SC-CO_2的拉伸和三轴抗压强度为未处理样品的约60%和80%。发现SC-CO_2高级损坏的初始阶段,损坏的延伸阶段持续到细长时间。作者揭示了从中学损伤力学角度影响弱平面的SC-CO_2的机制。本研究将对SC-CO_2压裂期间了解具有弱平面的紧密砂岩的压裂行为将是有益的。

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