首页> 外文期刊>Computational Geosciences >Analysis of a more realistic well representation during secondary recovery in 3-D continuum models
【24h】

Analysis of a more realistic well representation during secondary recovery in 3-D continuum models

机译:在3D连续模型中进行二次采油过程中更逼真的井眼分析

获取原文
获取原文并翻译 | 示例
           

摘要

The effectiveness of secondary recovery methods in reservoir development studies depends on the knowledge about how fluid-carrying regions (i.e. good-quality rock types) are connected between injection and production wells. To estimate reservoir performance uncertainty, comprehensive simulations on many reservoir model realisations are necessary, which is very CPU consuming and time demanding. Alternatively, we can use much simpler and physically based methods such as percolation approach. Classic percolation assumes connectivity between opposite 2-D faces of a 3-D system; whereas, hydrocarbon production is achieved through active wells that are one-dimensional lines (e.g. vertical, horizontal or deviated wells). The main contribution of this study is to analyse the percolation properties of 3-D continuum percolation models with more realistic well representations during secondary recovery. In particular, the connection of randomly distributed sands (i.e. good-quality rock types) between two lines (representing two wells) located at two corners of the system are modelled by Monte Carlo simulations. Subsequently, the connectivity and conductivity of such a line-to-line well representation is compared with that of face-to-face well representations in the previously published results. The critical percolation properties of those systems as well as the universality concept are also investigated. As there are many rooms for connections in 3-D models, we found that the principal percolation properties will not be altered significantly when the problem with a face-to-face connection is transformed to a line-to-line connection model.
机译:二次采油方法在油藏开发研究中的有效性取决于对注入井和生产井之间的流体输送区域(即优质岩石类型)如何联系的知识。为了估算储层性能的不确定性,必须对许多储层模型的实现进行全面的仿真,这非常耗CPU且耗时。另外,我们可以使用更简单且基于物理的方法,例如渗滤方法。经典渗流假定3D系统相对的2D面之间具有连通性;然而,碳氢化合物的生产是通过一维活动井(例如垂直井,水平井或斜井)实现的。这项研究的主要贡献是在二次采油过程中用更逼真的井眼分析来分析3-D连续渗滤模型的渗滤特性。特别是,通过蒙特卡洛模拟法对位于系统两个角的两条线(代表两个井)之间的随机分布的砂(即优质岩石类型)之间的连接进行建模。随后,在先前公布的结果中,将这种线对线井表示法的连通性和电导率与面对面井表示法的连通性和电导率进行了比较。还研究了这些系统的临界渗透特性以及普遍性概念。由于3-D模型中有许多连接空间,因此我们发现,当将面对面连接的问题转换为线对线连接模型时,主要的渗透属性不会显着改变。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号