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Applications of Computational Fluid Dynamics To Study:Slurry Flow in Pipeline for Heavy and Extraheavy oil

机译:计算流体动力学在研究中的应用中的应用:重型油气管道中的泥浆流动

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The Faja Petrolifera del Orinoco(FPO),located in the southern part of the Eastern Basin of Venezuela, has the largest reserves of heavy and extra heavy oil in the world.These oils are highly viscous and their API gravities values are between 7 and 15,these properties together with the existence of multiphase flow make the production and transportation of these oil is highly complex.Therefore,it is necessary to use heavy oil transportation methods focused on reducing the viscosity of oil,this is achieved be removing or modifying the oil compounds that have been pointed out as the main cause of the high viscosity of these oils,such as:partial or total upgrading or slurry transportation. This study presents a flow modeling of a solid-liquid dispersion through horizontal pipes,which represents a slurry transportation,using a software of computational fluid dynamics(CFD)called FLUENT 6.3.For the simulation methodology was selected Euler-mixture in a three dimensional pipe model,with different concentrations of solids.The simulations were validated with experimental data development by PDVSA Intevep that contains pressure drops,temperature,solid characterizations and reological behavior of the slurry. The performance evaluation by the CFD model showed an acceptable fit when it is compared against experimental data,this results allow to understand the hydraulic behavior of heavy oil slurry transport through pipeline. KComputational Fluid Dynamics;; CFD·Slurry;; Fluid Flow;; Multiphase Flow
机译:Faja Petrolifera del Orinoco(FPO)位于委内瑞拉东部南部的南部,拥有世界上重型和额外的重油储量最大。这些油是高度粘稠的,其API重力值在7到15之间,这些属性与多相流的存在使得这些油的生产和运输具有很高的复杂性。因此,必须使用重型油输送方法,重点是降低油的粘度,这是实现的,取消或改变油已经指出的化合物作为这些油的高粘度的主要原因,例如:部分或全部升级或浆料运输。该研究介绍了通过水平管的固液分散的流动建模,其代表浆料运输,使用称为流畅的6.3的计算流体动力学(CFD)。对于三维管中的模拟方法是选择的欧拉混合物模型,具有不同浓度的固体。通过PDVSA Intevep通过PDVSA Intevep进行验证的模拟,该模拟含有压降,温度,耐浆性格和浆料的生成行为。 CFD模型的性能评估在比较实验数据时显示可接受的拟合,这结果允许通过管道理解重油浆料输送的水力行为。 k 计算流体动力学; CFD·浆料;;流体流动;多相流量

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