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Scale Squeeze Placement Options in Subsea Multi-Lateral Horizontal Wells Completed With Sliding Sleeve Technology

机译:尺寸挤压放置选项在底座多横向水平孔中完成,具有滑动套筒技术

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The deployment of scale squeeze treatments in subsea horizontal wells has always presented a challenge in terms of understanding the location of injected fluids vs the location of the produced water where scale formation will occur. Over the years software packages such as Eclipse has been able to provide valuable information on the possible placement options for such wells when production logging tool (PLT) data have not been available. The development of multi-lateral drilling/completion technology has further complicated the placement challenges in such wells. In this paper Eclipse simulation data has been linked to SQUEEZE designs software for two subsea production wells completed with multi laterals and sliding sleeves to allow selective placement of the squeeze treatment. The objective of the study was to evaluate the options of bullhead deployment in terms of both laterals being open during the squeeze vs two squeeze stages being sized and selectively placed into each lateral again via bullhead deployment, but this time using the sliding sleeve technology to divert the chemical. Information on cross flow issues, the pump rates required to allow effective placement are presented, along with the differences in chemical volumes, pump time and soak times required for the two potential treatment options. The finding from this study show the clear advantages in terms of treatment volumes, reduced clean up time and extended treatment life (reduced intervention frequency) of bullhead deployment of two squeeze steps, one to each lateral, achieved by utilizing the sliding sleeve technology in these two production wells.
机译:在海底井中的鳞片挤压处理的部署在理解注入的流体的位置Vs将发生鳞片形成的所产生的水的位置,始终呈现挑战。多年来,当生产记录工具(PLT)数据尚未获得时,Eclipse等软件包(如Eclipse)的软件包已经能够提供有关可能的放置选项的有价值的信息。多横向钻井/完成技术的开发进一步复杂化了这种井中的放置挑战。在本文中,Eclipse仿真数据已被联系到挤压设计软件,为两个海底生产井完成,具有多个侧向和滑动套筒,以允许选择性地放置挤压处理。该研究的目的是评估在挤压期间打开的横向上的横向部署的汇票部署的选择与两个挤压阶段的尺寸和选择性地通过Bullhead部署再次被选择性地放置在每个横向进入每个横向进入每个横向部署时,但这一次使用滑动套筒技术转移化学品。有关交叉流动问题的信息,提出了允许有效放置所需的泵速率,以及两个潜在治疗方案所需的化学体积,泵时间和浸泡时间的差异。本研究的发现表明,在处理体积,减少了清洁时间和扩展治疗寿命(减少了两种挤压步骤的延长治疗寿命(减少了介入频率),通过利用滑动套筒技术实现的每一个侧向实现两台生产井。

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