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Oil-Viscosity Predictions From Low-Field NMR Measurements

机译:低场NMR测量的油粘度预测

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摘要

Canada contains vast reserves of heavy oil and bitumen. Viscosity determination is key to the successful recovery of this oil, and low-field nuclear magnetic resonance (NMR) shows great potential as a tool for estimating this property. An NMR viscosity correlation previously had been developed that is valid for order-of-magnitude estimates over a wide range of viscosities and temperatures. This correlation was built phenomenologically, using experiments relating NMR spectra to viscosity. The present work details a more thorough investigation into oil viscosity and NMR, thus providing a theoretical justification for the proposed correlation. A novel tuning procedure is also presented, whereby the correlation is fitted using the Arrhenius relationship to improve the NMR viscosity estimates for single oils at multiple temperatures. Tuning allows for NMR to be potentially used in observation wells to monitor thermal enhanced oil recovery (EOR) projects or online to monitor the viscosity of produced-fluid streams as they cool.
机译:加拿大拥有大量的重油和沥青储备。粘度测定是成功回收该油的关键,低场核磁共振(NMR)作为评估该性质的工具显示出巨大潜力。先前已经开发出一种NMR粘度相关性,该相关性对于在宽范围的粘度和温度范围内的数量级估计是有效的。使用NMR光谱与粘度相关的实验,从现象学上建立了这种相关性。本工作详细介绍了对油的粘度和NMR的更彻底的研究,从而为提出的相关性提供了理论依据。还提出了一种新颖的调节程序,从而使用阿伦尼乌斯(Arrhenius)关系拟合相关性,以改善在多种温度下单一油的NMR粘度估算值。通过调整,可以将NMR潜在地用于观测井中,以监测热采油(EOR)项目,或在线监测产出液流冷却时的粘度。

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