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Unique Application of EM LWD Casing Antenna System to Rocky Mountain Drilling

机译:EM LWD套管天线系统对岩石山钻井的独特应用

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Certain formations in the Rocky Mountains preclude the use of electromagnetic(EM)telemetry due to their inherent resistivities.A new system has been developed that extends the use of EM telemetry systems where they were previously not usable.The system involves installing a special downhole antenna when surface or intermediate casing is run to improve EM signal to noise ratio.The casing antenna system not only allows operators to take advantage of the benefits of EM logging- while-drilling(LWD)systems but also extends the drilling depth range where data can be provided. Drilling wells in the Powder River Basin often requires heavy mud weights and the extensive use of lost circulation material (LCM).Unfortunately,these types of muds play havoc on standard mud pulse telemetry systems.Washed equipment and downhole failures related to plugged pulsers often result in multiple trips for failures and excessive nonproductive time (NPT).This new EM LWD system,by contrast,has no moving parts and a through-bore,which allows for higher concentrations of LCM and heavy weighting materials to pass easily through the bottom hole assembly(BHA).The system is combinable with a variety of LWD sensors so the telemetry type proves especially useful in areas that experience high LCM incidents.A key aspect of this system is that it also extends the depth range of where EM LWD systems can operate. Along with a compensated resistivity tool,a unique LWD spectral azimuthal gamma ray(SAGR)sensor,which provides accurate formation evaluation data,high quality gamma ray images and spectral elemental analysis,was used to help geosteer the well to stay in the zone of interest in the reservoir.This paper will examine a case study where the new system was used in an area where drilling with EM was not previously possible.It will describe the basic system design,key operating parameters,provide insight on the drilling problems,and address formation evaluation challenges and solutions.
机译:在落基山脉某些地层排除使用电磁(EM)遥测技术由于其固有的resistivities.A新系统已经开发出来,延长他们在那里以前没有usable.The系统包括安装一个特殊的井下天线使用EM遥测系统当地面或过渡套管运行到改善EM信号噪声ratio.The壳体天线系统不仅允许操作者采取的EM的好处随钻测井(LWD)系统,而是还扩展钻孔深度范围,其中数据可以提供。在粉河盆地打井往往需要大量的泥浆比重的广泛使用堵漏材料(LCM)。不幸的是,这些类型的泥浆的一场浩劫,对有关插入脉冲发生器标准泥浆脉冲遥测systems.Washed设备和井下故障经常导致在多次往返于故障和过度非生产时间(NPT)。该新EM LWD系统,相比之下,没有移动部件和一个通孔,其允许更高的浓度LCM和重加重材料的方便的通过底部孔传组件(BHA)。该系统是组合了各种LWD传感器所以遥测型证明中的区域是特别有用的,该系统的经验高LCM incidents.A关键方面是,它也延伸,其中EM LWD系统的深度范围可以操作。随着补偿的电阻率工具,一个独特的LWD光谱方位角γ射线(撒加)传感器,其提供了精确的地层评价数据,高质量伽玛射线图像和光谱元素分析,是用来帮助地质导向井留在所关注的区在reservoir.This本文将探讨一个案例研究,其中在一个地区,钻探与EM以前没有possible.It将介绍基本的系统设计,关键运行参数使用了新的系统,提供关于钻井问题的洞察力,和地址地层评价的挑战和解决方案。

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