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Experimental PVT Property Analyses for Athabasca Bitumen

机译:Athabasca Bitumen的实验PVT属性分析

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Extra heavy oil and bitumen reservoirs constitute huge volumes around the world and are attracting attention as alternativeenergy resources while the light oil reserves diminish. Thermal recovery and steam based methods are the most widely usedrecovery methods applicable to these highly viscous deposits. Study of steam injection in porous media containing viscous oilrequires a good understanding of the physical properties of both reservoir rock and fluid. In particular, there are some bitumenproperties that are needed for simulation studies and the most reliable source for these data is laboratory tests.This paper presents experimental study of some PVT properties of Athabasca crude oil to help provide input data for furthernumerical studies.Viscosity of Athabasca heavy crude was measured using a rotational viscometer up to 300 °C. This viscosity data is a morereliable input for simulation purposes. Athabasca oil was characterized by gas chromatography analysis to C39+. No significantamount of components lighter than C9 was observed. Whole sample molar mass was measured to 534 g/mol by cryoscopy.Density at standard conditions of 1 atm and 60 °F was measured to 1.0129 g/cm3 by a density measuring cell. Density andmolar mass of the C39+ fraction were also determined. Density measurements were performed in the temperature range 120-195 °C as well where the density was found to vary in the range 0.95-0.90 g/cm3. A formula was derived based onexperimental density data to predict Athabasca bitumen density in the temperature and pressure range studied. The interfacialtension between oil and steam was measured in the temperature range 120-220 °C by the pendant drop method. The interfacialtension was determined to be between 25 and 18 mN/m with a decreasing trend in the temperature range studied.The results presented here can be used as reference data for studies related to Athabasca bitumen.
机译:额外的重油和沥青水库构成了世界各地的巨大体积,并将注意力作为替代中的资源,而轻油储量减少。热回收和基于蒸汽的方法是适用于这些高粘性沉积物的最广泛使用的方法。含有粘性油菜的多孔介质中蒸汽注射的研究良好地了解水库岩石和液体物理性质。特别是,仿真研究需要一些沥青功能,并且这些数据最可靠的来源是实验室测试。本文提出了Athabasca原油的一些PVT性能的实验研究,帮助提供了脱毛研究的输入数据。Athabasca的输入数据使用高达300℃的旋转粘度计测量重质原油。该粘度数据是用于仿真目的的莫雷索的输入。 Athabasca油的特征是通过气相色谱分析对C39 +的特征。观察到比C9轻的成分未高于C9。通过冷冻镜测量全样摩尔质量以534g / mol。通过密度测量细胞测量60°F的标准条件下的标准条件下,测量60°F至1.0129g / cm 3。还测定了C39 +级分的密度和摩尔质量。在120-195℃的温度范围内进行密度测量,其中发现密度在0.95-0.90g / cm 3的范围内变化。基于种基的异化密度数据得到了一种公式,以预测研究的温度和压力范围内的Athabasca沥青密度。通过吊坠滴法测量油和蒸汽之间的intercacialtension在120-220℃的温度范围内测量。在研究的温度范围内测定intercacialtension介于25至18mN / m之间。此处呈现的结果可用作与Athabasca沥青相关的参考数据。

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