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New Generation Nano Technology Drilling Fluids Application Associated to Geomechanic Best Practices: Field Trial Record in Bahia - Brazil

机译:新一代纳米技术钻井液应用与地质力学最佳实践相关:巴伊亚的现场试验记录 - 巴西

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A Brazilian Client drilling in the Reconcavo Basin, drilling the 12 1/4" interval of the 1-UR-2-BA well, which presented challenges due a fresh water zone near the surface and an unstable shale section below the sandstone formation. An important choice to ensure success would be selecting a drilling fluid specifically designed without chlorides so that the freshwater zone being drilled would not risk contamination, provide adequate shale inhibition as well as characteristics to provide optimum drilling performance. Nano-Fluids can be produced by adding Nano-sized particles in low volumetric fractions to a fluid providing enhanced properties. In relation to the geomechanical effect, the fracture formations, such as the Pojuca, Maracangalha and Candeias, there is potential to drill unstable shale formations with rich deep clay, that have an affect on the drilling fluids, even with synthetic based muds. The fluid penetration may cause collapse of the rock during drilling, particularly affected by time lapse. A very challenging field trial was performed drilling more than 1300m of 12 1/4" hole to 1830m with a new generation water base fluid based on Nanotechnology. The field data captured showed additionaly benefits with this trial when compared with the field data captured of SBM which is historically used in this area: drilling faster with lower pressure loss, Easier and more economical, as well as much more environmentally friendly. The NanoFluid, without chlorides, presented excellent performance while drilling reactive shale formations. Low drilling torque values captured the evidence that the fluids had good lubricity in the field as was observed in the lab. The drill cuttings on the shakers ran freely over the shakers screens, dried inside indicating a good level of shale inhibition, which was confirmed by fluid analysis. After drilling out at 1324m with Nano Fluid System through the Pojuca formation, while tripping caving associated to mechanical instability was observed possiblydue to dehydration, osmosis effect and under-balanced fluid density. A Geomechanic study, that included the rock & fluid interaction effect on collapse pressure with exposure time was developed. Recently, a 2nd 12 1/4" interval was drilled on a different well, reusing the Nano Fluid utilized on a previous well then stored in the Mud Plant for 100 days, and it showed a good performance while drilling, tripping, and running in the hole with casing as well as performing cement job, breaking a paradigm about reuse of water base mud. The potential to reuse the Nano Fluid from well to well could have a significant impact in reducing the overall well cost in the wells drilled utilizing this fluid. Additional benefit related to fluid reservoir characterization was highlighted by geologists. Recent investigations as presented by Mortatha Saadoon Al-Yasiri & WaleedTareq AlSallami (2015) have demonstrated that Nano-Fluids have engaging features for applications where mechanical stability control is of interest. For a better understanding before the application a careful analysis of Reconcavo Baiano typical formations was conducted. For this, the shales were characterized by CEC, XRF, XRD and LSM. Drilling oil and gas wells with Nano Technology Drilling Fluids System represents a major shift for the Industry.
机译:在雷孔卡沃盆地甲巴西客户端钻孔,钻1-UR-2-BA的12 1/4" 的间隔以及,其中提出,由于表面附近的淡水区和砂岩地层下面不稳定页岩部挑战。一种以确保成功的重要选择将被选择而不氯化物使得淡水区被钻不会风险污染,提供足够的页岩抑制以及特性以提供最佳的钻孔性能。纳米流体可以通过添加纳米制造专门设计钻井液尺度的颗粒在低体积分数的流体提供增强的性能。关于地质力学效应,断裂的地层,如波茹卡,Maracangalha和Candeias,存在潜在的钻具有丰富深粘土不稳定页岩地层中,具有一个在钻井液的影响,甚至用合成基泥浆。钻进期间的流体渗透可能导致岩石的塌陷,尤其AFF由时间流逝ected。当与捕获的SBM的场数据进行比较,进行一个非常具有挑战性的现场试验比基于纳米技术的新一代水基流体12 1/4" 洞的1830米钻1300米更多。现场数据获得的显示出与该试验additionaly好处这是历史上在这个领域中使用:用较低的压力损失,更容易和更经济的,以及更加环境友好的纳米流体,没有氯化物,呈现优异的性能,同时钻反应页岩地层低钻井扭矩值捕获的证据钻更快作为在实验室中观察到的流体不得不在现场良好的润滑性。在振动筛的钻屑在振动器屏幕自由运行,内部指示页岩抑制,其通过流体分析证实了良好的水平上干燥。在钻出来后1324米通过所述波茹卡形成纳米流体系统,而跳闸崩落关联到机械不稳定性,观察possiblydue脱水,渗透作用和欠平衡流体密度。一个地质力学研究,其中包括与曝光时间压塌的岩石和流体相互作用影响的开发。最近,一个第二12 1/4" 间隔钻上的不同井,再利用纳流体上的先前井然后被存储在泥植物100天使用,并且在钻井,跳闸,并且在运行它表现出良好的性能与套管以及进行水泥浇筑工作,打破了有关水基泥浆的重用范式的孔。再利用纳米从井流体势阱可能在降低整体以及成本的钻井数量利用这个流体显著影响了相关的流体储存表征附加益处是由地质学家高亮显示。最近的调查通过Mortatha Saadoon的Al-Yasiri&WaleedTareq AlSallami(2015)已​​经证明,纳米流体对于其中机械稳定性控制是感兴趣的应用的啮合部件所呈现。对于是进行雷孔卡沃巴亚诺典型编队认真分析应用程序前更好地了解。为此,页岩的特点是CEC,XRF,XRD和LSM。钻探石油和天然气井用纳米技术钻井液体系代表着该行业的重大转变。

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