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首页> 外文期刊>Journal of natural gas science and engineering >Waterless fracturing technologies for unconventional reservoirs opportunities for liquid nitrogen
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Waterless fracturing technologies for unconventional reservoirs opportunities for liquid nitrogen

机译:非常规储层液氮的无水压裂技术

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摘要

During the past two decades, hydraulic fracturing has significantly improved oil and gas production from shale and tight sandstone reservoirs in the United States and elsewhere. Considering formation damage, water consumption, and environmental impacts associated with water-based fracturing fluids, efforts have been devoted to developing waterless fracturing technologies because of their potential to alleviate these issues. Herein, key theories and features of waterless fracturing technologies, including Oil-based and CO2 energized oil fracturing, explosive and propellant fracturing, gelled LPG and alcohol fracturing, gas fracturing, CO2 fracturing, and cryogenic fracturing, are reviewed. We then experimentally elaborate on the efficacy of liquid nitrogen in enhancing fracture initiation and propagation in concrete samples, and shale and sandstone reservoir rocks. In our laboratory study, cryogenic fractures generated were qualitatively and quantitatively characterized by pressure decay tests, acoustic measurements, gas fracturing, and CT scans. The capacity and applicability of cryogenic fracturing using liquid nitrogen are demonstrated and examined. By properly formulating the technical procedures for field implementation, cryogenic fracturing using liquid nitrogen could be an advantageous option for fracturing unconventional reservoirs. (C) 2016 Elsevier B.V. All rights reserved.
机译:在过去的二十年中,水力压裂显着改善了美国及其他地区的页岩和致密砂岩储层的油气生产。考虑到与基于水的压裂液相关的地层损害,水消耗和环境影响,由于其减轻了这些问题的潜力,已经致力于开发无水压裂技术。在此,回顾了无水压裂技术的主要理论和特点,包括油基和CO2加油压裂,炸药和推进剂压裂,胶凝LPG和酒精压裂,气体压裂,CO2压裂和低温压裂。然后,我们将通过实验详细阐述液氮在增强混凝土样品以及页岩和砂岩储层岩石中的裂缝萌生和扩展方面的功效。在我们的实验室研究中,通过压力衰减测试,声学测量,气体压裂和CT扫描定性和定量地表征了所产生的低温裂缝。证明并检查了使用液氮进行低温压裂的能力和适用性。通过适当制定现场实施的技术程序,使用液氮进行低温压裂可能是非常规油藏压裂的有利选择。 (C)2016 Elsevier B.V.保留所有权利。

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