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页岩水力压裂裂缝起裂和扩展断裂力学模型 被引量:8
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作者 侯振坤 程汉列 +2 位作者 海金龙 张道平 高如超 《长江科学院院报》 CSCD 北大核心 2020年第5期99-107,共9页
结合大尺寸真三轴水平井水力压裂物理模拟试验,对龙马溪组页岩的起裂、扩展以及扩展过程中水力裂缝与天然裂缝的相互作用进行了详细的力学分析,并基于断裂力学和流体力学理论知识,建立了水力裂缝起裂和扩展力学模型,推导了相应的断裂力... 结合大尺寸真三轴水平井水力压裂物理模拟试验,对龙马溪组页岩的起裂、扩展以及扩展过程中水力裂缝与天然裂缝的相互作用进行了详细的力学分析,并基于断裂力学和流体力学理论知识,建立了水力裂缝起裂和扩展力学模型,推导了相应的断裂力学判据。结果表明:①起裂方式可以分为3类,即页岩本体张性起裂、沿天然裂缝(层理面)的剪切起裂、沿天然裂缝(层理面)的张拉起裂;②水力裂缝扩展过程中,随着裂缝长度的增加,泵压逐渐减小,最终趋于一个略大于最小水平主应力的稳定值;③水力裂缝与天然裂缝的相互作用类型可根据天然裂缝是否开启分为以下5类,即剪切天然裂缝后穿过、直接穿过天然裂缝、从天然裂缝一端穿过、同时从天然裂缝两端穿过、从某一弱面穿过。研究结果可为页岩气藏水平井压裂开采提供有力技术支持。 展开更多
关键词 龙马溪组页岩 水力压裂 裂缝起裂与扩展 物理模拟 泵压曲线 相互作用 天然裂缝
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Crack propagation and hydraulic fracturing in different lithologies 被引量:4
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作者 Hou Zhen-Kun cheng han-lie +3 位作者 Sun Shu-Wei Chen Jun Qi Dian-Qing Liu Zhi-Bo 《Applied Geophysics》 SCIE CSCD 2019年第2期243-251,255,共10页
We simulated hydraulic fracturing in different lithologic rocks in the horizontal drilling by using the true physical model experiment and large rock specimens, carried out the real-time dynamic monitoring with adding... We simulated hydraulic fracturing in different lithologic rocks in the horizontal drilling by using the true physical model experiment and large rock specimens, carried out the real-time dynamic monitoring with adding tracer and then did post-fracturing cutting and so on. Based on this monitoring results, we compared and assessed the factors affecting expansion in shale, shell limestone, and tight sandstone and the fracture expansion in these rocks. In shale, the reformed reservoir volume is the highest, fracture network is formed in the process of fracturing. In tight sandstone, the fracture surface boundaries are curved, and the fracture surface area accounts for 25–50% of the entire specimen. In shell limestone, the complexity of the fracture morphology is between shale and tight sandstone, but no fracture network is developed. Brittleness controls the fracture surface area. In highly brittle rocks, the fracture surface area is high. Fracture toughness mainly affects the initiation and propagation of cracks. A fracture network is formed only if bedding planes are present and are more weaker than their corresponding matrix. The horizontal in situ deviatoric stress affects the crack propagation direction, and different lithologies have different horizontal in situ deviatoric stress thresholds. Low f luid injection rate facilitates the formation of complex cracks, whereas high fluid injection rate favors the development of fractures. Fluid injection weakly controls the complexity of hydraulic fracturing in low-brittleness rocks, whereas lowviscosity fracturing fluids favor the formation of complex cracks owing to easy enter microcracks and micro-pore. Displacement has a greater impact on high brittle rocks than low brittle rocks. 展开更多
关键词 SHALE LIMESTONE sandstone:hydraulic fracturing crack propagation rock mechanics
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