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Simulating the Permeability Reduction due to Asphaltene Deposition in Porous Media

机译:模拟多孔介质中沥青质沉积引起的渗透性降低

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A static to dynamic approach to modeling Asphaltenes has been developed and validated. A new algorithm for static asphaltene modeling uses a multi-solid thermodynamics approach where the equality of fugacity for each component and phase is applied at equilibrium conditions. This is required for minimizing the Gibbs free energy. The fractal distribution function used for the splitting and characterization of heavy components provides accurate results. The precipitation and redissolution of asphaltenes are investigated for a relatively heavy crude oil from an Iranian field. A series of experiments are designed and conducte quantitatively to obtain the permeability reduction in a slim tube. Using a dynamic reservoir simulator, a 3-dimensional asphaltene model is developed to simulate the precipitation, flocculation, deposition and its impact on permeability in a slim tube. With this approach, the asphaltene is defined as a set of component(s) that can precipitate depending on their molar percentage weight in solution. The simulated permeability reduction due to asphaltene deposition shows good agreement with our experimental data.
机译:已经开发并验证了对沥青质建模的动态方法进行了静态。一种新的静态沥青质建模算法使用多固态热力学方法,其中每个组分和相平等的抗真菌度和相位在平衡条件下应用。这是最小化吉布斯自由能量所必需的。用于分裂和表征重型部件的分形分布函数提供了准确的结果。研究了沥青质的沉淀和结变,用于来自伊朗领域的相对较重的原油。设计了一系列实验并定量地进行,以获得纤薄管的渗透性降低。使用动态储库模拟器,开发了三维沥青质模型来模拟沉淀,絮凝,沉积及其对纤薄管渗透性的影响。通过这种方法,沥青质定义为一组组分,其可以根据其溶液中的摩尔百分比重量沉淀。由于沥青质沉积引起的模拟渗透性降低显示了与我们的实验数据吻合良好。

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