Sensitivity analysis of dimensionless parameters for physical simulation of water-flooding reservoir

Y. Bai, Jiachun Li, Jifu Zhou
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引用次数: 10

Abstract

A numerical approach to optimize dimensionless parameters of water-flooding porous media flows is proposed based on the analysis of the sensitivity factor defined as the variation ration of a target function with respect to the variation of dimensionless parameters. A complete set of scaling criteria for water-flooding reservoir of five-spot well pattern case is derived from the 3-D governing equations, involving the gravitational force, the capillary force and the compressibility of water, oil and rock. By using this approach, we have estimated the influences of each dimensionless parameter on experimental results, and thus sorting out the dominant ones with larger sensitivity factors ranging from 10−4 to 100.
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水驱油藏物理模拟无因次参数敏感性分析
在分析以目标函数对无量纲参数变化的变化率定义的敏感性因子的基础上,提出了一种水驱多孔介质流动无量纲参数优化的数值方法。从重力、毛细力和水、油、岩的可压缩性的三维控制方程出发,导出了一套完整的五点井网水驱油藏标度判据。利用该方法,我们估计了每个无量纲参数对实验结果的影响,从而筛选出了具有较大灵敏度因子(10−4 ~ 100)的优势参数。
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