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Journey of a Technology from Lab to Readiness for Field Application: Enzymatic CaCO3-A Novel,Environment-friendly System for Conformance and Sand Consolidation

机译:从实验室提供技术申请的技术之旅:酶Caco3-一种新颖的,环保型互补和砂巩固系统

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Long horizontal wells are hydraulically fractured or acid stimulated to economically develop chalk reservoirs in the North Sea.To separate the zones and ensure conformance,each fracture or zone is separated by isolation packers and flow is controlled with a sliding sleeve.With time,conformance control capability of the lower completion may be lost if the sliding sleeve is stuck open or holes are eroded or corroded in the lower tubing.If a shortcut has developed between an injector and producer, either during stimulation or operation of the well,the consequence of losing conformance capability of the lower completion is more severe.Another scenario with serious consequences occurs when the well has been hydraulically fractured with proppant and the proppant is back-produced without a possibility to close off the zone. To mechanically fix this conformance issue,it would require working over the well and replacing the lower completion.In an old(30-40 years)well,this is a challenge.A better solution is to solve the problem chemically by consolidating the sand in the fracture or plugging the fracture connecting the injector and producer.Recovery from the reservoir will then be optimized and the solution is likely to be cheaper than working over the well. Enzymatic CaCO3 technology is a novel chemical system that can be used for plugging fractures and consolidates sand in propped fractures in horizontal wells.All chemicals used offshore in the North Sea need to be compliant with OSPAR regulations;the Enzymatic CaCO3 system is classified as environment- friendly.It also has predictable chemistry and is completely reversible.This paper discusses the process of maturing the technology from concept to readiness for field implementation covering lab testing,IP protection,chemical procurement strategies,environmental impact evaluation,and quality assurance process during field application.
机译:长水平井是液压破碎的或酸刺激,以刺激在北海中的经济开发粉笔储存器。要分开区域并确保一致性,每个骨折或区域通过隔离封装器分离,并使用滑动套管控制流量。随着时间的推移,控制装置。如果滑动套筒被卡住或孔在下部管中侵蚀或腐蚀,则较低完成的能力可能会丢失。如果在喷射器和生产者之间开发的速度和井的孔隙之间,则损失的结果较低完成的一致性更严重。当井已经用支撑剂液压破裂时,发生了严重后果的其他情景,并且在没有可能关闭区域的情况下背部生产的支撑剂。为了机械地解决这一形象问题,它需要在井中工作并更换较低的完成。在旧(30-40岁)井井中,这是一个挑战。更好的解决方案是通过整合沙子来说化学解决问题然后,将从储层中优化连接喷射器和制片人的骨折或堵塞裂缝。然后优化从储存器中脱钙,并且解决方案可能比在井上均匀的方式便宜。酶促Caco3技术是一种新型化学体系,可用于堵塞骨折并整合水平井中的支撑骨折。北海的海上使用的化学物质需要符合OSPAR规定;酶Caco3系统被归类为环境 - 友好。它也具有可预测的化学性,并且是完全可逆的。本文讨论了从概念到解现场实施的技术的过程,涵盖实验室测试,IP保护,化学采购策略,环境影响评估和现场申请期间的质量保证过程。

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