注水井非定常流场分析模型及其应用研究

L. Yongming, Zhao Jinzhou, Jiang Youshi, Gong Yang, Yao Fengsheng
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引用次数: 1

摘要

油田采出水一般都是回用到地层中,注水过程中地层压力的动态分析一直是研究热点。然而,由于模型的复杂性,目前的数值模型很难应用于注水过程中的地层压力分析。此外,实际地层条件与假设均匀和圆形边界的一般分析模型有很大不同。因此,本文首次考虑了地层的各向异性,建立了注水井位于矩形地层任意位置时的非定常流动数学模型。本文还考虑井为线源而非点源,采用正交变换方法推导模型的精确解。方便、准确地分析注水过程中的地层压力变化具有重要意义。编制了计算程序,分析了注水过程中影响地层压力的关键因素。结果表明:在半对数尺度上,初始注入井底压力与时间成正比,压力迅速增加,但随着时间的推移,压力的增加速度逐渐放缓,该模型正确反映了压力波的传播机制,可用于分析注水过程中储层的压力行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on an Analytical Model of Unsteady Flow in Water Injection Well and Its Application
Produced water in oil field is generally recycled back to the formation, and the dynamic analysis of formation pressure during water injection has always been a research hotspot. It is difficult, however, to apply current numerical models to formation pressures analysis during water injections due to the models' complexity. Furthermore, actual formation conditions are quite different from the generic analytical models that assume homogeneous and circular boundaries. Therefore, this paper takes the anisotropy of formation into account for the first time and establishes a mathematical model for unsteady flow when water injection well is located at any position of a rectangular formation. This paper also considers the well as line source instead of point source, and this research adopts an orthogonal transformation method to deduce the exact solution of the model. It is of great significance to easily and exactly analyze formation pressure behaviour during water injection. Calculation program is compiled to analyze the key factors affecting formation pressure during water injection. Results show that: initial injection bottom hole pressure is proportional to time on semi-log scales, and the pressure increases rapidly, but the increase slows down later on in time, the model correctly reflects the propagation mechanism of pressure-wave, which can be applied to analyze the pressure behaviour of reservoirs during water injection.
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