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Critical Factors Affecting Pulsed Neutron Saturation Monitoring in Carbonate Reservoirs

机译:影响碳酸盐储层脉冲中子饱和监测的关键因素

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Pulsed neutron spectral carbon/oxygen (C/O) logging is a widely used shallow measurement for time lapse reservoir saturation monitoring. Because of its shallow depth of investigation, its measurement is affected by several factors among which the near wellbore logging environment is the most important. For example, hole condition, cement quality and fluids in the wellbore have drastic effects on C/O measurement. Some of these effects, such as those due to oil holdup in the wellbore, can be corrected for in the data post-processing. Others might have a permanent imprint on the data, which cannot be removed. It is therefore extremely important to fully understand the effects of the different physical parameters within the wellbore vicinity that might be affecting the measurements. An extensive study was conducted in a field where reservoir saturation monitoring logs encountered discrepancies in water saturation between open hole and C/O logs, where the latter showed changes in saturation not supported by production history. It was found that one of the main reasons behind this discrepancy is the effect of mud filtrate invasion on the shallow C/O measurement, which varies as a function of time and rock type characteristics. Other factors, such as wellbore fluid reinvasion effect across zones of perforation, also play a role. In this paper, it is demonstrated with field examples the effect of mud filtrate on C/O logs and define criteria used to diagnose this phenomenon. It is also highlighted other factors affecting C/O measurement such as wellbore fluid reinvasion and cement condition. Last, we present recommendations and best practices to conduct a more representative reservoir saturation monitoring.
机译:脉冲中子谱碳/氧气(C / O)测井是一个广泛使用的时间流逝储层饱和度监测的浅测量。由于其浅的调查深度,其测量受到若干因素的影响,其中近井流测井环境是最重要的。例如,井筒的空穴条件,水泥质量和液体对C / O测量具有激烈影响。在数据后处理中,可以校正其中一些效果,例如由于井筒中的储油而导致的效果。其他人可能对数据上的永久印记,无法删除。因此,完全理解可能影响测量的井筒附近内不同物理参数的影响非常重要。在一个领域进行了广泛的研究,其中水库饱和监测日志遇到了开孔和C / O日志之间的水饱和度差异,后者显示了生产历史不支持的饱和度的变化。结果发现,这种差异背后的主要原因之一是泥浆滤液侵袭对浅C / O测量的影响,这随着时间和岩石型特性而变化。其他因素,如穿孔区域的井筒流体恢复效果,也发挥作用。在本文中,用现场实施例进行说明泥浆滤液对C / O日志的影响,并定义用于诊断这种现象的标准。它还强调了影响C / O测量的其他因素,例如井筒流体升温和水泥条件。最后,我们提出了建议和最佳实践来进行更具代表性的水库饱和度监测。

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