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Cusp catastrophe model for plugging pressure prediction of lost circulation control in fractured reservoirs

机译:裂缝储层丢失循环控制压力预测的CUSP灾难模型

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摘要

Lost circulation is one of the most common and costly problems in drilling. The stability of the plugging zone is a key factor determining the lost circulation control. In this paper, an analytical model is derived based on the catastrophic theory, which considers key parameters affecting the stability of the plugging zone, such as formation parameters, contact parameters and plugging zone parameters. The maximum plugging pressure (MPP) can be calculated by this model to quantitatively evaluate the stability of the plugging zone. The validation case shows that the calculation result is in good agreement with the experimental measurement. In addition, the sensitivity analysis is performed and shows that the length of the plugging zone, the sliding friction coefficient of the fracture surface and the Young's modulus of plugging zone are positively correlated with MPP, but the shear height of plugging zone, sliding friction coefficient of lost circulation materials (LCMs) and Poisson's ratio of the plugging zone are negatively correlated with MPP. The model can be used to predict the MPP in lost circulation control and considered as a reference for the optimization of the LCMs and plugging program.
机译:失去的流通是钻井中最常见和昂贵的昂贵问题之一。堵塞区的稳定性是确定丢失循环控制的关键因素。在本文中,基于灾难性理论推导出分析模型,这考虑了影响堵塞区域稳定性的关键参数,例如形成参数,接触参数和堵塞区域参数。可以通过该模型计算最大堵塞压力(MPP)以定量评估堵塞区域的稳定性。验证案例表明,计算结果与实验测量良好。此外,执行灵敏度分析并表明堵塞区域的长度,断裂表面的滑动摩擦系数和杨氏模量与MPP正相关,但堵塞区域的剪切高度,滑动摩擦系数丢失的循环材料(LCMS)和泊松区的堵塞区的比例与MPP负相关。该模型可用于预测丢失循环控制中的MPP,并被认为是优化LCMS和堵塞程序的参考。

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