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Experimental study on shale fracturing assisted by low-temperature freezing

机译:低温冷冻辅助页岩压裂的实验研究

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Under the cold impact of liquid nitrogen, the shale suffers from the significant freezing damage, which provides the possibility of liquid nitrogen fracturing. Moreover, shale fracturing assisted by liquid nitrogen can effectively reduce reservoir pollution. In this paper, the hydraulic fracturing experiments of natural shale samples frozen by liquid nitrogen were carried out to investigate the factors affecting the crack propagation of shale after low temperature fracturing. The results show that a large number of cracks or macropores form inside the natural shale sample after freezing treatment by liquid nitrogen. The fracture pressure of the shale decreases with increasing impact time at the beginning of the immersion time, and remains substantially stable after an immersion of 2 hours. When the freezing time increases, the crack initiation time increases accordingly. After low temperature impact, the fracture pressure of shale decreases with the increase of stress difference, but the cracking times vary with the stress with obvious regularity. It is easier to form main fracture with larger displacement on the premise of well-developed shale bedding.
机译:在液氮的冷冲击下,页岩遭受明显的冷冻破坏,这提供了液氮破裂的可能性。而且,液氮辅助的页岩压裂可以有效减少油藏污染。本文通过液氮冷冻天然页岩样品的水力压裂实验,研究了影响低温压裂后页岩裂缝扩展的因素。结果表明,液氮冷冻处理后,天然页岩样品内部形成大量裂缝或大孔。页岩的断裂压力在浸入时间开始时随着冲击时间的增加而降低,并且在浸入2小时后基本保持稳定。当冻结时间增加时,裂纹开始时间相应地增加。低温冲击后,页岩的断裂压力随着应力差的增加而减小,但开裂时间随应力的变化而变化,规律性明显。在成熟的页岩层理前提下,容易形成较大位移的主裂缝。

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