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Structural failure mechanism and strengthening method of fracture plugging zone for lost circulation control in deep naturally fractured reservoirs

机译:深部天然裂缝性储层失控的裂缝堵塞带结构破坏机理及加固方法

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摘要

Focused on the lost circulation control in deep naturally fractured reservoirs, the multiscale structure of fracture plugging zone is proposed based on the theory of granular matter mechanics, and the structural failure pattern of plugging zone is developed to reveal the plugging zone failure mechanisms in deep, high temperature, high pressure, and high in-situ stress environment. Based on the fracture plugging zone strength model, key performance parameters are determined for the optimal selection of loss control material(LCM). Laboratory fracture plugging experiments with new LCM are carried out to evaluate the effect of the key performance parameters of LCM on fracture plugging quality. LCM selection strategy for fractured reservoirs is developed. The results show that the force chain formed by LCMs determines the pressure stabilization of macro-scale fracture plugging zone. Friction failure and shear failure are the two major failure patterns of fracture plugging zone. The strength of force chain depends on the performance of micro-scale LCM, and the LCM key performance parameters include particle size distribution, fiber aspect ratio, friction coefficient, compressive strength, soluble ability and high temperature resistance. Results of lab experiments and field test show that lost circulation control quality can be effectively improved with the optimal material selection based on the extracted key performance parameters of LCMs.
机译:专注于深度自然断裂储层中的循环控制,基于粒状机械理论提出了裂缝堵塞区的多尺度结构,开发了堵塞区的结构故障模式,揭示了深度的堵塞区域故障机制,高温,高压和高原位应力环境。基于骨折堵塞区域强度模型,确定了对损耗控制材料(LCM)的最佳选择的关键性能参数。实验室骨折堵塞采用新型LCM的实验,以评估LCM关键性能参数对骨折堵塞质量的影响。开发了裂缝储层的LCM选择策略。结果表明,由LCMS形成的力链决定了宏观裂缝堵塞区域的压力稳定。摩擦损失和剪切失效是裂缝堵塞区域的两个主要故障模式。力链的强度取决于微级LCM的性能,LCM关键性能参数包括粒度分布,光纤纵横比,摩擦系数,抗压强度,可溶性能力和高耐温性。实验室实验结果和现场试验表明,通过基于LCM的提取的关键性能参数,可以有效地改善失去循环控制质量。

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