首页> 外文期刊>Petroleum science >A new mathematical model for horizontal wells with variable density perforation completion in bottom water reservoirs
【24h】

A new mathematical model for horizontal wells with variable density perforation completion in bottom water reservoirs

机译:底水储层可变密度射孔完井水平井的新数学模型

获取原文
           

摘要

Horizontal wells are commonly used in bottom water reservoirs, which can increase contact area between wellbores and reservoirs. There are many completion methods used to control cresting, among which variable density perforation is an effective one. It is difficult to evaluate well productivity and to analyze inflow profiles of horizontal wells with quantities of unevenly distributed perforations, which are characterized by different parameters. In this paper, fluid flow in each wellbore perforation, as well as the reservoir, was analyzed. A comprehensive model, coupling the fluid flow in the reservoir and the wellbore pressure drawdown, was developed based on potential functions and solved using the numerical discrete method. Then, a bottom water cresting model was established on the basis of the piston-like displacement principle. Finally, bottom water cresting parameters and factors influencing inflow profile were analyzed. A more systematic optimization method was proposed by introducing the concept of cumulative free-water production, which could maintain a balance (or then a balance is achieved) between stabilizing oil production and controlling bottom water cresting. Results show that the inflow profile is affected by the perforation distribution. Wells with denser perforation density at the toe end and thinner density at the heel end may obtain low production, but the water breakthrough time is delayed. Taking cumulative free-water production as a parameter to evaluate perforation strategies is advisable in bottom water reservoirs.
机译:水平井通常用于底部水库,这会增加井眼与水库之间的接触面积。有许多用于控制波峰的完井方法,其中可变密度射孔是一种有效的方法。很难评估井的生产率和分析水平井的流入剖面,水平井具有数量不均匀分布的穿孔,这些穿孔以不同的参数为特征。在本文中,分析了每个井眼射孔以及储层中的流体流动。基于潜在函数建立了一个综合模型,该模型将储层中的流体流动与井眼压力下降耦合在一起,并使用数值离散方法进行了求解。然后,根据活塞式位移原理建立了水底波峰模型。最后,分析了水底波峰参数和影响入水剖面的因素。通过引入累积自由水产量的概念,提出了一种更系统的优化方法,该方法可以在稳定石油产量和控制井底水位之间保持平衡(或达到平衡)。结果表明,流入剖面受射孔分布的影响。趾端的射孔密度较高而尾端的密度较小的井可能会降低产量,但注水时间会延迟。建议在底部水库中以累积的自由水生产为参数来评估射孔策略。

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