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New Generation of HTHP Water Based Drilling Fluid Changing Conventional Drilling Fluids Solutions

机译:新一代HTHP水基钻井液改变常规钻井液溶液

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The conventional drilling fluid to drill the high-temperature wells are non-aqueous fluid.ADNOC used high-temperature water-based drilling fluid instead of nonaqueous fluid to drill the well successfully.Hightemperature water-based drilling-fluid systems hold several advantages over non-aqueous systems from financial and environmental viewpoints.However,most conventional water-based systems start to become unstable at temperatures above 300 degF.This paper details the design and implementation of specially designed water-based drilling fluids based on custom-made branched synthetic polymer that meet these temperature stability requirements.The branched synthetic polymer exhibits superior rheological properties and fluid loss control,as well as longterm stability above 400 degF.Under static conditions,the hightemperature fluid shows no gelation,resulting in lower swab surge pressures while the stability of the highly branched synthetic polymer and enhanced rheological profile minimize sag.ADNOC required a cost-effective drilling-fluid system that remains stable under static temperatures expected to exceed 375 degF.The longterm stability of the system was critical for successful wireline logging operations.In addition,the system was required to provide shale inhibition,hydrogen sulfide(H2S)suppression and enough density to maintain well integrity while drilling through anticipated highpressure zones.The challenging intermediate and reservoir sections were drilled and evaluated using high temperature water-based system.This paper will discuss the successful execution of high temperature waterbased system in one of high-temperature well in ADNOC field.
机译:用于钻孔的常规钻井液是非水流体.Adnoc使用高温水基钻井液而不是非水流体钻井井。高温水性钻井液系统保持若干优点 - 从金融和环境观点出发的水性系统。然而,最常规的水基系统在高于300 degf的温度下开始变得不稳定。本文详述了基于定制支化合成聚合物的专门设计的水性钻井液的设计和实施满足这些温度稳定性要求。分支合成聚合物具有优异的流变性能和流体损失控制,以及高于400 degf.under的稳定性稳定性,高温液体显示出凝胶化,导致稳定性较低的旋转浪涌压力高度分枝的合成聚合物和增强的流变型,最小化S. AG.Adnoc需要一个经济高效的钻井液系统,在静态温度下保持稳定,预计将超过375°。该系统的长期稳定性对于成功的有线测井操作至关重要。此外,该系统需要提供页岩抑制,硫化氢(H2S)抑制和足够的密度以通过预期的高压区域钻探的同时保持良好的完整性。使用高温水性系统钻探并评估挑战的中间和储层部分。本文将讨论高温下水基体系的成功执行在Adnoc领域的高温井中。

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