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An Update to Viscosity Correlations for Gas-Saturated Crude Oils

机译:气体饱和原油的粘度相关性更新

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For live crude oils, dissolved gas acts to reduce viscosity from the value observed for dead oils. The reduction in viscosity can significantly impact pressure drop and flow rate and must be properly accounted for by any viscosity model. This article provides a detailed review of existing correlation methods and offers state-of-the-art solutions necessary for oil field operations in 2007 and beyond. A total of 21 methods for calculating saturated oil viscosity have been identified from the literature. A large database consisting of data from oil PVT reports and literature sources has been compiled in order to evaluate these methods. This data represents over 12,000 measurements from 1849 samples. The gases dissolved in the oils contain varying amounts of non-hydrocarbons and the oils provide a representative crossection of the expected range in API gravity and Watson characterization factor found in crude oils from producing regions located around the world. A detailed analysis of correlation performance has been conducted which reveals inaccuracies in many of the previously published methods. As a result, a new method is proposed which is consistent across a wide range of parameters and offers increased accuracy over existing methods.
机译:对于活性原油,溶解气体的作用是降低粘度,使之不同于死油。粘度的降低会严重影响压降和流速,任何粘度模型都必须适当考虑这一点。本文详细介绍了现有的相关方法,并提供了2007年及以后油田作业所必需的最新解决方案。从文献中已经鉴定出总共21种计算饱和油粘度的方法。为了评估这些方法,已经汇编了一个大型数据库,该数据库包含石油PVT报告和文献来源的数据。该数据代表来自1849个样本的12,000多次测量。溶解在油中的气体包含各种数量的非烃,这些油提供的API重力和Watson表征因子的预期范围的代表性截面是在来自世界各地的生产区域的原油中发现的。已对相关性能进行了详细的分析,揭示了许多以前发布的方法中的不准确性。结果,提出了一种新方法,该方法在广泛的参数范围内是一致的,并且比现有方法具有更高的准确性。

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