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The Effects of Asphaltene Precipitation and Deposition Control Parameters on Reservoir Performance: A Numerical Approach

机译:沥青质沉淀和沉积控制参数对储层性能的影响:数值方法

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Asphaltene precipitation and deposition problems are one of the severe problems which some reservoirs may face with them during their production life. Asphaltene deposition can affect on reservoir performance such as porosity and permeability reduction, wettability alteration, moreover it may lead to plugging of wellbore and production surface facilities. These effects can be modeled by consideration some asphaltene control parameters by activation asphaltene option in compositional simulation package. These parameters are usually estimated from core flooding experiments. This paper mentions the concept of asphaltene modeling and its related parameters and also describes the numerical study results of the effect of asphaltene precipitation and deposition control parameters on reservoir performance, by using a compositional simulation model with asphaltene modeling options. For this purpose, the real reservoir geology model and fluid data are used. After tuning the equation of state (EOS) by analyzing the oil properties data and setting the asphaltene control parameters, the simulation model is built by incorporation of the EOS for asphaltic oil properties and the asphaltene parameters into the compositional simulation model. The model enables the simulation of asphaltene precipitation, flocculation, and deposition including adsorption, plugging, and entrainment. Also, it can show the resulting reduction in porosity and permeability and changes in oil viscosity and rock wettability according some range of asphaltene control parameters. The model is used to investigate the effects of these parameters selection on reservoir performance, including oil production, recovery factor and average reservoir pressure, also, asphaltene behavior including precipitation, flocculation, adsorption, plugging and entrainment, moreover, formation damage and its effect of rock wettablity changes. The results show the effect of the asphaltene precipitation and deposition parameters selection on reservoir performance clearly, so it should correctly calibrate and carefully use them for modeling. Also, for reservoir that does not have any asphaltene core flooding experiment, they will be useful for estimating the asphaltene model input parameters and its effect on simulation results.
机译:沥青质沉淀和沉积问题是一些储层在生产过程中可能面对的严重问题之一。沥青质沉积会影响储层性能,例如孔隙率和渗透性降低,润湿性改变,而且可能导致井筒和生产表面设施的堵塞。这些效果可以通过在组成模拟包装中通过激活沥青质选择来模拟一些沥青质控制参数。这些参数通常估计来自核心泛滥实验。本文提到了沥青质建模及其相关参数的概念,还通过使用沥青质造型选择的组成模拟模型来描述沥青质沉淀和沉积控制参数对储层性能影响的数值研究结果。为此目的,使用真实的水库地质模型和流体数据。通过分析油性数据并设定沥青质控制参数来调整状态(EOS)的等式,通过将EOS用于沥青油性能和沥青质参数中的EOS成分为模拟模拟模型来构建仿真模型。该模型能够模拟沥青质沉淀,絮凝和沉积,包括吸附,堵塞和夹带。此外,它可以显示导致孔隙率和渗透性的降低,并根据一定范围的沥青质控制参数进行油粘度和岩石润湿性的变化。该模型用于研究这些参数选择对储层性能的影响,包括石油生产,恢复因子和平均储层压力,以及沥青质行为,包括沉淀,絮凝,吸附,封堵和夹带,以及形成损伤及其效果岩石湿润变化。结果表明沥青质降降量和沉积参数选择对储层性能的影响显然,因此应该正确校准并小心地使用它们来建模。此外,对于没有任何沥青质核心泛洪实验的储层,它们将可用于估计沥青质型输入参数及其对模拟结果的影响。

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