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Sampling While-Drilling Goes Where Wireline Can’t: Case Studies Illustrating Wireline Quality Measurements in Challenging Borehole Environments

机译:钻孔的采样是电缆不能:案例研究说明在挑战井眼环境中的有线质量测量

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In the early 2000s, formation pressure while-drilling tools were introduced that can obtain formation pressure data, even in highly deviated wells and extended-reach drilling. In the past two years this LWD technology has evolved with the addition of downhole fluid sampling and fluid analysis. LWD Sampling and Testing can now be performed in challenging environments that cannot be performed with wireline tools such as horizontal or highly deviated wells. The limitations of wireline deployment in these wells are due to the cumulative frictional resistance of the wireline, the toolstring components and the borehole where it is run. Although several technologies exist to mitigate the risks, such as fly wheels, wireline tractors or pipe-conveyed options, operators prefer to eliminate the risks and costs associated with them by utilizing LWD technology. The first part of this paper describes the new sampling and testing service that was designed for the LWD environment. This service has several closed-loop control systems for pressure testing, mobility determination and for pumping during the sampling and cleanup operations. In-situ fluid analysis is achieved with the use of sensors that measure optical refractive index, sound speed, density and viscosity. Downhole fluid samples are retrieved with the use of single-phase tank technology. The second part of this paper details case studies of field tests that were performed for a major operator in Trinidad and for an IOC in the Netherlands. In Trinidad the service successfully performed pressure testing, real time fluid analysis and recovered three single phase samples while drilling a 300ft section at 70° deviation. On a dedicated logging run in the Netherlands the service first accurately took 25 formation pressure points and clearly identified three distinct gradients. The customer targeted four zones of interest and acquired 11 samples, six single phase samples in the oil zone, three single phase samples in the water zone and finally three single phase samples in the gas zone. This pressure testing and sampling operation was all executed in a 1307 m tangent section at 73° inclination. The service was utilized to determine the presence of moveable fluids in the reservoir for a horizontal development well for a customer in Norway. The tool was positioned at a sampling station with a mobility of 1.8 mD/cP and after almost 5 hours of pumpout at that station, it successfully acquired the first sample, after another 4 hours of pumpout at the same station the tool acquired the second sample.
机译:在2000年代初期,引入了钻孔工具的形成压力,即使在高度偏离的井和延长钻井中,也可以获得形成压力数据。在过去两年中,随着井下液体采样和流体分析,这种技术已经进化了。现在可以在挑战环境中进行LWD采样和测试,这些环境不能与水平或高度偏差的井等有线工具进行。线缆部署在这些孔中的局限性是由于有线,工具刺组件和运行的钻孔的累积摩擦阻力是由于累积摩擦阻力。虽然存在若干技术来减轻风险,例如飞行轮,有线拖拉机或管道传送的选项,但操作员更喜欢通过利用LWD技术消除与它们相关的风险和成本。本文的第一部分介绍了为LWD环境设计的新采样和测试服务。该服务有几种用于压力测试,移动性确定和抽样过程中泵送和清理操作的闭环控制系统。通过使用测量光学折射率,声速,密度和粘度的传感器来实现原位流体分析。利用单相罐技术检索井下液体样品。本文的第二部分详细说明了对特立尼达的主要运营商和荷兰IOC的主要运营商执行的现场测试的案例研究。在特立尼达,该服务成功地进行了压力测试,实时流体分析,并在70°偏差下钻300英尺处的截面时恢复了三个单相样品。在荷兰的专用伐木运行中,服务首先准确地采用25个形成压力点,并清楚地确定了三个不同的梯度。客户瞄准了四个兴趣区,并在油区中获得了11个样品,六个单相样品,水区中的三个单相样品,最终在气区中​​的三个单相样品。该压力测试和采样操作全部在73°倾斜度的1307 m切线部分中执行。该服务用于确定储层在挪威客户的水平开发中的可移动流体的存在。该工具被定位在与1.8毫达西/ CP和之后几乎5小时该站泵出的的迁移率的采样站,它成功地在同一站获取的第一样品,另外4小时泵出后的工具获取的第二样品。

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