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Artificial Lift Optimization with Foamer Technology in the Alliance Shale Gas Field

机译:与联盟页岩气田采用泡沫塑料技术人工升力优化

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In the last years, the shale gas business has gained increasing emphasis within the major oil & gas companies. In particular, Quicksilver Resources and eni e&p, through its subsidiary eni US Operating Co., and are jointly involved in the development of the Alliance shale gas field in the prolific Barnett shale play located in Texas. Recently, both companies started a common effort to optimize production and lift costs. Such efforts included a deeper analysis of the artificial lift performance and exploitation of additional deliquification technologies. In fact, typical shale gas wells are adversely affected by the continuous flow-back of the huge volumes of water used for the frac jobs. In the Alliance field, the most common way to support deliquification was by injecting lift-gas through the casing. Foaming agents were only occasionally deployed and a comprehensive activity to assess their technical and economic performance has been conducted. In the last six months, extensive foamer injection tests have been performed on several wells, considering the effect of a factors such as production/injection mode (tubing or casing), foamer type and rate, lift-gas rate, gas and water rates and wellhead pressures. The uncommon synergy of continuous foamer and lift-gas injection has also been extensively exploited in horizontal wells. At the end of the test phase, more than one third of the producing wells had been treated with a foamer and relevant techno- economic improvements had been achieved. The paper describes in detail the methodology, the field experience and the results obtained.
机译:在过去几年中,页岩气业务已在主要石油和天然气公司内越来越强调。特别是,通过其子公司eni US运营公司,Quicksilver资源和ENI E&P,并共同参与了位于德克萨斯州多产的Barnett Shale Play的联盟页岩气田的发展。最近,两家公司都开始共同努力,以优化生产和提升成本。这种努力包括对人工升力性能和额外饮水技术的利用的更深入分析。实际上,典型的页岩气井受到用于FRAC工作的巨大水量的连续回流不利影响。在联盟领域中,通过壳体注入升力的方式,最常见的方法是通过壳体喷射。仅偶尔部署起泡剂,并进行了综合活动,以评估其技术和经济绩效。在过去的六个月中,考虑到诸如生产/注射模式(管道或壳体),发泡型和速率,提升 - 气速,气体和水速和水费等因素的效果,已经对几个井进行了大量的泡沫塑料喷射试验。井口压力。连续泡沫和升力 - 气体注入的罕见协同作用也在水平孔中广泛利用。在测试阶段结束时,已经用泡沫钻井处理了超过三分之一的生产井,并且已经实现了相关的技术经济改进。本文详细介绍了方法,现场经验和所获得的结果。

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