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Cost Effective and Ecologically Sound Fluid Disposal During Well Clean up and Post Fracturing Flowback Operations

机译:在井中清理和折断流动操作期间具有成本效益和生态声音流体处理

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An important aspect of the well test and poststimulation flowback operations is the need to produce,responsibly manage,and safely dispose of the substantial amount of hydrocarbons,typically through flaring,which is potentially an environmental concern.This challenge has received significant attention over the past few decades and remains a major concern today.It is especially important in offshore environments,considering requirements for safe disposal of large volumes of crude and gas as well as completion fluids and possibly formation water.A common alternative to offshore flaring is storing the crude on the drilling rig,test barge,or tanker.The methods used for fluid disposal during offshore operations were reviewed as the basis for defining a practical workflow to select the optimal operations design,thus leading to a significant reduction or full elimination of burning.Inaccurately selected fluid disposal strategies can significantly constrain operations,limiting achievable objectives and increasing the risk of HSE incidents.The typical methods employed include fluid storage at the well site,high efficiency burners,and the transfer of produced liquids to oil tankers during extended well tests.Additional considerations from traditional approaches relate to the evolution of regulatory and legal frameworks on environmental concerns.Each method has its benefits and practical limitations.An analysis of possible approaches to avoid burning fluids and minimizing operational limits to well test operations identified that starting from a certain volume,crude storage and the transfer to production facilities can be considered as the best option to avoid burning while adding value to well effluents and turning well tests from a cost-to revenue-generating activity.Focusing on offshore operations with limited deck space and thus potentially limited storage capacity,the solution developed for the North Sea involved transferring the produced crude into a small shuttle tanker via a soft wall surface floating rubber hose.By using a floating transfer hose,the special requirements for hose installation were avoided,saving valuable rig time.It also reduced the need for pipe preheating and enabled the tanker to move,decreasing petrol consumption for maintaining dynamic positioning.The paper will summarize the results and lessons learned from the application of different methods used for fluid disposal in a wide range of well test operations around the globe.These were used to determine that economical and environmentally responsible solutions exist for fluid disposal during well test operations.The paper will also detail an innovative,field-proven,and cost-effective fluid storage solution using a shuttle tanker during well test and flow back operations offshore.This technique was applied in five successfully performed well tests in the North Sea,storing more than 50,000 barrels of reservoir crude in total.
机译:井测试和后刺激流量操作的一个重要方面是需要生产,负责任地管理和安全地处理大量的烃,通常通过燃烧,这可能是环境问题。本挑战已经受到过去的重大关注几十年来,今天仍然是一个重大关注。它在近海环境中尤为重要,考虑到安全处置大量原油和天然气以及完整的液体以及可能的地层水的要求。近海耀斑的常见替代品储存原油钻机,试验驳船或油轮。在海上操作期间用于流体处理的方法被审查为定义实际工作流程以选择最佳操作设计,从而导致显着减少或完全消除燃烧。造成的流体处理策略可以显着限制操作,限制可实现的物体伊夫斯及增加HSE事件的风险。所用的典型方法包括井位点,高效燃烧器的液体储存,以及在延长井测试期间对油轮的产量液体转移。来自传统方法的参与,与监管的演变有关和环境问题的法律框架。中间方法具有其益处和实际限制。分析可能的方法,以避免燃烧液体和最小化运营限制,以确定从一定量,原油储存和转移到生产设施的转移可以被视为避免燃烧的最佳选择,同时增加溢流量的价值,并从成本到收入生成活动转动井测试。汇集有限的甲板空间的海上运营,因此潜在限制的存储容量,该解决方案为北方开发海洋涉及将生产的原油转移到小型班车通过软墙面浮动橡胶软管。采用浮动转移软管,避免了软管安装的特殊要求,节省了宝贵的原装时间。它还减少了对管道预热的需求,并使油轮移动,降低维持的汽油消耗动态定位。本文将总结从全球各种井测试操作中使用不同方法的应用和经验教训。这些方法用于确定流体处理中的经济和环境负责任的解决方案测试操作良好。本文还将详细介绍在井测试和流回运营期间使用梭子油轮的创新,现场经过验证和经济效益的流体存储解决方案。本技术应用于五,在北海成功进行了良好的测试,总共储存了50,000多桶水库原油。

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