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Extension of Oil Well Economic Life by Simultaneous Production of Oil and Electricity

机译:通过同时生产石油和电力延长油井经济寿命

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Oil production decline and excessive water production are prevalent in mature fields and unconventional plays, which significantly impact the profitability of the wells and result in costly water treatment and disposal. To seek for a sustainable development of those wells, reducing the operation cost and extending their economic lives, this paper presents a method of synergistic production of hydrocarbon and electricity, which could harvest the unexploited geothermal energy from the produced water and transfer heat to electricity in the wellbore. Such method is cost-effective, since it does not require any surface power plant facility, and it is replicable in numerous wells including both vertical wells and horizontal wells. By simultaneous coproduction of oil and electricity, the value of existing assets could be fully developed, operation cost could be offset, and the economic life of the well could be extended. This recently proposed method incorporated thermoelectric power generation technology and oil production. In this method, electricity could be produced by thermoelectric generator (TEG) mounted outside of the tubing wall under temperature gradient created by produced fluid and injected fluids. The aim of this paper is to illustrate the economic practicability of oil-electricity coproduction by using thermoelectric technology in oil wells based on previously proposed design. We examined the technical data of high water-cut oil wells in North Dakota and collected required information with respect to performance thermoelectric power generations. Special emphasis was placed on the key parameters related to project economics, such as thermoelectric material, length of TEG and injection rate. Sensitive studies were carried out to characterize the impact of the key parameters on project profits. We showed that by simultaneously production of oil and electricity, $234,480 of additional value could be generated without interfering with oil production. The proposed method capitalizes on the unexploited value of produced water and generates additional benefits. This study could provide a workflow for oil and gas operators to evaluate an oil-electricity coproduction project and could act as a guidance to perform and commercialize such project to balance parts of the operation cost and extend the life of the existing assets.
机译:石油产量下降和过度的水产产量在成熟的田地和非传统剧中普遍存在,这显着影响了井的盈利能力,并导致昂贵的水处理和处置。本文旨在降低井的可持续发展,减少运营成本并延长其经济生活,提供了一种协同生产碳氢化合物和电力的方法,可以从生产的水中收获未分发的地热能并将热量转移到电力井筒。这种方法具有成本效益,因为它不需要任何表面发电厂设施,并且在众多井中可复制包括垂直井和水平孔。通过对石油和电力同时进行,现有资产的价值可以完全开发,运营成本可能是抵消,并且可以延长井的经济生活。该最近提出的方法包括热电发电技术和石油生产。在该方法中,可以通过由产生的流体和注入的流体产生的温度梯度在管壁外部的热电发电机(TEG)产生电力。本文的目的是说明通过基于先前提出的设计在油井中使用热电技术来说明油电包群的经济性。我们在北达科他州审查了高水土油井的技术数据,并根据性能热电电力收集了所需信息。将特殊的重点放在与项目经济学相关的关键参数上,例如热电材料,TEG和注射率的长度。进行敏感性研究,以表征关键参数对项目利润的影响。我们表明,通过同时生产石油和电力,可以在不干扰石油生产的情况下产生234,480美元的额外价值。拟议的方法利用生产的水的未开发价值,产生额外的福利。本研究可为石油和天然气运营商提供工作流程,以评估油电委员会项目,并可作为执行和商业化此类项目的指导,以平衡运营成本的部分,并延长现有资产的生命。

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