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The Challenge that Completion Types Present to Scale inhibitor squeeze Chemical Placement: A Novel Solution using a Self-Diverting Scale Inhibitor Squeeze Process

机译:完善类型抑制抑制剂的挑战挤压化学放置:一种新的溶液,使用自转向抑制抑制剂挤压过程

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The control of inorganic scale deposition within the reservoir under both natural depletion and injection water support has been a challenge to the oil industry for a number of decades. The challenge has remained identifying the location of water breakthrough within the production interval and the subsequent injection of scale inhibitor into these zones to prevent scale formation within the near welbore and production tubing. As completion technology has advanced, and more complicated completions have been developed and installed to increase the rate of oil recovery, the challenges of water management and scale control have become significant factors if long term production from these wells is to be maintained. This paper will outline the challenges of chemical deployment via bullheading into subsea wells completed in high permeability reservoirs with sand control technology. The factors considered when designing a self-diverting scale inhibitor system will be outlined in terms of viscosity profile of the chemical and overflush fluid, impact of temperature on fluid viscosity, pump rate, shear effects, tubing diameter vs. Wellbore friction and the impact of radial flow on viscosity. Modelling data from vertical and horizontal production wells will be used to illustrate the challenges that pump rate changes and a self-diverting scale inhibitor system has to overcome to allow effective deployed of scale inhibitor without the need for coiled tubing in long (500ft to 3,000 ft) wells in 2 Darcy reservoirs. The value of this technology in terms of the economic factors will be outlined with field examples where coiled tubing and bullhead applications will be compared and contrasted to illustrate the value in terms of total cost of operation that the self-diverting technology can offer.
机译:在天然耗尽和喷射水支持下,对水库内无机垢沉积的控制对石油工业造成了多十年的挑战。挑战在生产间隔内识别水突破的位置,随后将量表抑制剂注入这些区域内,以防止在近焊缝和生产管内的规模形成。由于完成技术先进,并且开发并安装了更复杂的完工,以增加石油回收率,如果要维持这些井的长期生产,水管理和规模控制的挑战已成为重要因素。本文将概述通过欺骗储层在具有砂控制技术的高渗透储层完成的海底井中化学部署的挑战。在化学和溢流液的粘度曲线方面概述了在设计自转移尺度抑制剂系统时考虑的因素,温度对流体粘度,泵速率,剪切效应,管道直径与井筒摩擦的影响和影响的影响粘度上的径向流动。从垂直和水平生产井建模数据将用于说明泵速变化和自转尺度抑制剂系统必须克服的挑战,以便在长时间(500英尺到3,000英尺的500英尺到3,000英尺的情况下,允许有效地部署规模抑制剂)2达西水库中的井。在经济因素方面,该技术的价值将概述,其中将进行比较和对比,以便对其进行比较和对比,以说明自转移技术可提供的总操作成本方面的价值。

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