...
首页> 外文期刊>Journal of Petroleum Science & Engineering >Well test analysis of finite-conductivity fractured wells producing at constant bottomhole pressure
【24h】

Well test analysis of finite-conductivity fractured wells producing at constant bottomhole pressure

机译:在恒定井底压力下生产有限导裂缝性油井的试井分析

获取原文
获取原文并翻译 | 示例
           

摘要

Conventional pressure buildup and drawdown tests are generally influenced by wellbore storage effects. These effects may dominate the early well test data prohibiting good formation characterization of the area surrounding the wellbore. One of the advantages of constant bottomhole pressure tests is that they are immune to these adverse effects. Constant pressure test data can be used with confidence to provide good description of the formation around the wellbore in addition to full-scale reservoir interpretation.This paper presents an analysis technique for finite conductivity fractured wells producing at constant bottomhole pressure from closed reservoirs. The reciprocal rate and reciprocal rate derivative data are directly used to determine the fracture and reservoir parameters without recoursing to type curve matching. All the dominant flow regimes such as early time bilinear, pseudo-radial, and boundary-dominated flow are analyzed using log-log plots of the reciprocal rate and reciprocal rate derivative data. The slopes of the straight lines of the different flow regimes are very distinct and are used to determine various reservoir and fracture parameters such as fracture conductivity, reservoir permeability, skin factor, drainage area, and shape factor.Furthermore, a 0.65 slope straight line equation describing the transition between the infinite acting pseudo-radial and the boundary-dominated flow period in rectangular systems is presented. It is shown in the paper that this straight line can be used to either determine the formation permeability in the absence of the pseudo-radial flow, or calculate the drainage area. It is also illustrated that the intersection points of the various straight lines can be used to verify the accuracy of the results obtained from the different flow regimes.A systematic step-by-step procedure illustrating the methodology of the proposed technique for the analysis of bilinear, pseudo-radial, and boundary-dominated flow regimes is described. The applicability of the method is illustrated using two simulated cases.
机译:常规的压力增加和下降测试通常受井筒储存效应的影响。这些影响可能会主导早期的试井数据,从而无法对井眼周围区域进行良好的地层表征。恒定的井底压力测试的优点之一是它们不受这些不利影响的影响。恒压测试数据可以对井眼周围的地层进行可靠的描述,此外还可以进行完整的储层解释。本文介绍了一种在封闭的储层中以恒定的井底压力生产有限电导率压裂井的分析技术。倒数和倒数导数数据可直接用于确定裂缝和储层参数,而无需寻求类型曲线匹配。使用倒数和倒数导数数据的对数对数图分析了所有主要的流动形式,如早期双线性,伪径向和边界主导的流动。不同流态的直线斜率截然不同,可用于确定各种储层和裂缝参数,例如裂缝导流率,储层渗透率,表皮因子,排水面积和形状因子。此外,斜率直线方程为0.65描述了矩形系统中无限作用的伪径向和边界支配的流动周期之间的过渡。本文显示,该直线可用于确定不存在伪径向流时的地层渗透率,或用于计算排水面积。还说明了可以使用各种直线的交点来验证从不同流态获得的结果的准确性。系统的逐步过程说明了所提出的双线性分析技术的方法描述了伪径向和边界主导的流动状态。通过两个模拟案例说明了该方法的适用性。

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