首页> 外文会议>SPE Middle East Oil Gas Show and Conference >Application of 2D NMR for Formation Testing and Sampling in Heavy Oil Formations
【24h】

Application of 2D NMR for Formation Testing and Sampling in Heavy Oil Formations

机译:2D NMR在重型油层中形成测试和取样的应用

获取原文

摘要

Timely and detailed evaluation of in-situ hydrocarbon flow properties such as oil density and viscosity is critical for successful development of heavy oil reservoirs. The prediction of fluid properties requires comprehensive integration of advanced downhole measurements such as nuclear magnetic resonance (NMR) logging, formation pressure, and mobility measurements, as well as fluid sampling. The reservoir rock presented in this paper is an unconsolidated Miocene formation comprising complex lithologies including clastics and carbonates. The reservoir fluids are hydrocarbons with significant spatial variations in viscosity ranging from (60-300 cP) to fully solid (tar). Well testing and downhole fluid sampling in this formation are hindered by low oil mobility, unconsolidated formation that generates sand production, emulsion generation, and very low formation pressure. We present a two-pronged log evaluation workflow to identify sweet spots and to predict fluid properties within the zones of interest. First, the presence of 'missing NMR porosity' and 'excess bound fluid' is estimated by comparing the NMR total and bound fluid porosity with the conventional total porosity and uninvaded water-filled porosity logs, respectively. Secondly, two-dimensional NMR diffusivity vs. T2 NMR analysis is performed in prospective zones where lighter and, possibly, producible hydrocarbons are detected. The separation of oil and water signals provides a resistivity-independent estimation of the shallow water saturation. Additionally, we correlated the position of the NMR oil signal with oil-sample viscosity values. The readily available log-based viscosity greatly improves the efficiency of the formation and welltesting job. We successfully sampled high viscosity hydrocarbon fluids by utilizing either oval pad or straddle packer. The customized tool designed for sampling aided gravitational segregation of clean hydrocarbons from the water-based mud filtrate and emulsion; and therefore providing representative reservoir fluid samples based on downhole fluid analyzers.
机译:及时和详细评估原位烃流动性质,例如油密度和粘度对于重型油藏的成功开发至关重要。流体特性的预测需要综合整合先进的井下测量,例如核磁共振(NMR)测井,形成压力和移动性测量,以及流体采样。本文提出的储层岩石是一种未溶解的内氨基形成,包括包含疏裂和碳酸盐的复杂岩性。储层液是烃,其粘度的显着空间变化,范围为(60-300cp)至完全固体(焦油)。在这种形成中的测试和井下流体取样通过低油迁移率,未溶解的形成,产生砂产生,乳液产生和非常低的形成压力。我们提出了一个双管齐下的日志评估工作流程来识别甜点,并预测感兴趣的区域内的流体性质。首先,通过将NMR总和结合的流体孔隙率与传统的总孔隙率和未剥离的水填充的孔隙率对比进行比较,估计“缺少NMR孔隙率”和“过量结合的流体”的存在。其次,在检测更轻且可能,可能,可生产的烃的预期区域中进行二维NMR扩散率与T2 NMR分析。油和水信号的分离提供了独立于浅水饱和的电阻率估计。另外,我们将NMR油信号的位置与油样粘度值相关联。随时可获得的基于物流的粘度大大提高了地层和阱间作业的效率。我们通过利用椭圆形焊盘或跨吹覆封隔器成功地采样了高粘度烃流体。专为从水性泥浆滤液和乳液中抽出清洁碳氢化合物的辅助重力分离的定制工具;因此,基于井下流体分析仪提供代表性储层流体样品。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号