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Mechanical plugging-solid expandable tubular refracturing technology

机译:机械堵塞 - 固体可膨胀管耐压技术

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摘要

To solve the three major problems of low production, low efficiency and low permeability of oil fields, it is necessary to develop new tight oil layers or shale oil outside the original perforated section in the well that has been perforated. The key to the success of repeated fracturing operations is the ability to block the original perforation of the well. At present, with tubing fracturing construction, volume fracturing of the target reservoir cannot be achieved due to limited displacement, and the effect of reservoir transformation is not obvious, affecting the productivity of the old well. Based on the above problems, this paper proposes a new blocking method suitable for fracturing wells - solid expansdable tubular (SET) plugging. In this paper, it established SET-expansion cone-casing-rubber ring 2D dynamic model which considers the friction, and contact, to analyze the effect of compression and length of rubber ring and the constraint condition of SET on sealing performance; laboratory experiments were carried out and data on driving force, sealing capacity and suspension force were obtained. The results show that optimizing the parameters of expansion cone structure can effectively reduce the residual stress of SET and driving force after expansion; the construction method of SET and the parameters of rubber ring are the main factors that affect the suspension sealing ability, and paper proposes an effective solution; in addition, experiment results show that the SET meets the requirements of fracturing construction with internal pressure greater than 60 MPa and suspension force greater than 600 kN after expansion, and can be used to seal the well body structure of refracturing wells with fewer perforations and shorter distances, and the diameter can be guaranteed to reach 112 mm. The research results provide new ideas and solutions for repeated pressure wells and high-pressure plugging.
机译:为了解决低生产,低效率和油田渗透性的三大问题,有必要在井中穿孔的原始穿孔部分外开发出新的紧密油层或页岩油。重复压裂操作成功的关键是能够阻止井的原始穿孔。目前,由于管道压裂结构,由于位移有限,储层变换的效果不会显而易见地实现目标储层的体积压裂,影响旧井的生产率。基于上述问题,本文提出了一种适用于压裂井 - 固体可膨胀管(设定)堵塞的新的阻塞方法。在本文中,它建立了设定膨胀锥形橡胶环2D动态模型,其考虑了摩擦,接触,分析了橡胶环压缩和长度的效果和集合对密封性能的约束条件;进行实验室实验,并获得了驱动力,密封能力和悬浮力的数据。结果表明,优化膨胀锥结构的参数可以有效地降低膨胀后设定和驱动力的残余应力;橡胶环设定的施工方法及橡胶环参数是影响悬架密封能力的主要因素,纸张提出了一种有效的解决方案;此外,实验结果表明,该套装满足压裂结构的要求大于60MPa,膨胀后大于600 kn的悬浮力,可用于密封耐腐蚀孔的孔体结构,较少的穿孔和更短距离,直径可以保证达到112毫米。研究结果为反复压力井和高压堵塞提供了新的思路和解决方案。

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