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Theory and Application of Numerical Simulation of Chemical Flooding in High Temperature and High Salt Reservoirs

机译:高温高盐油藏化学驱数值模拟的理论与应用

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Applications, theoretical analysis and numerical methods are introduced for the simulation of mechanical models and principles of the porous flow in high temperature, high salt, complicated geology and large-scale reservoirs in this paper. Considering petroleum geology, geochemistry, computational permeation fluid mechanics and computer technology, we state the models of permeation fluid mechanics and put forward a sequence of implicit upwind difference iteration schemes based on refined fractional steps of the upstream, which can compute the pressures, the saturation and the concentrations of different chemistry components. A type of software applicable in major industries has been completed and carried out in numerical analysis and simulations of oil extraction in Shengli Oil-field, which brings huge economic benefits and social benefits. This software gives many characters: spatial steps are taken as ten meters, the number of nodes is up to hundreds of thousands and simulation time period can be tens of years and the high-order accuracy can be promised in numerical data. Precise analysis is present for simplified models of this type and that provides a tool to solve the international famous problem.
机译:介绍了在高温,高盐,复杂地质和大型油藏中模拟渗流力学模型和原理的应用,理论分析和数值方法。综合考虑石油地质,地球化学,计算渗透流体力学和计算机技术,提出了渗透流体力学模型,提出了基于上游精细分数阶的一系列隐式迎风差分迭代方案,可以计算出压力,饱和度。以及不同化学成分的浓度。已经完成了一种适用于主要行业的软件,并在胜利油田的采油数值分析和模拟中进行了应用,带来了巨大的经济效益和社会效益。该软件具有许多特征:空间步距为10米,节点数高达数十万,仿真时间可以长达数十年,并且可以在数值数据中保证高阶精度。目前已对此类简化模型进行了精确分析,并提供了解决国际著名问题的工具。

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