首页> 外文会议>SPE Canada Heavy Oil Technical Conference >An Experimental Evaluation of Pore Plugging and Permeability Reduction Near SAGD Sand Control Liners
【24h】

An Experimental Evaluation of Pore Plugging and Permeability Reduction Near SAGD Sand Control Liners

机译:SAGD砂砂衬垫附近孔隙堵塞和渗透性降低的实验评价

获取原文

摘要

This paper presents the results of an experimental investigation to determine the mechanisms of pore plugging and permeability reduction near SAGD screen liners. The aim is to arrive at a liner design that maximizes wellbore productivity without compromising the sand control function of the liner. We set up a large-scale Sand Retention Testing (SRT) facility that accommodates a multi-slot liner coupon at the base of a sand-pack with representative grain shape and particle size distribution (PSD) of typical oil sands. Brine is injected at different flow rates and pressure differences across the coupon and the sand-pack as well as the mass and PSD of the produced sand and fines are measured during the test. Further, the PSD and concentration of migrated fines (<44 microns) along the sand-pack are determined in a post-mortem analysis. The testing results are used to assess the effect of slot size and slot density on the sand control performance as well as pore-plugging and permeability alterations near the sand-control liner. We observed that the slot size, slot density and flow rate highly affect the concentration and PSD of produced fines as well as accumulated fines (pore clogging) above the screen. For the same flow rates and total injected pore volume, wider screen aperture and higher slot density result in lower fines accumulation above the screen but more sanding. Further, the variation of slot density alters the flow convergence behind the slots, hence, the size and concentration of mobilized fines. Results indicate that higher fines concentration near the screen reduces the retained permeability, hence, lowers the wellbore productivity. This paper provides a new insight into pore plugging and fines migration adjacent the sand control liner. It also introduces a new testing method to optimize the design of sand control liners for minimum productivity impairment in SAGD projects.
机译:本文介绍了实验研究的结果,以确定SAGD筛床衬垫附近的孔堵塞和渗透性减少机制。目的是到达衬里设计,可以在不影响衬里的砂控制功能的情况下最大化井筒生产率。我们建立了一个大规模的砂保留测试(SRT)设施,可容纳一个带有代表性晶粒形状和典型油砂粒度分布(PSD)的砂包底部的多插槽衬垫优惠券。在试验期间测量盐水以不同的流速注入不同的流速和压力差,以及砂包以及产生的砂和罚物的质量和PSD。此外,在验尸分析后确定沿着砂包的PSD和迁移的细粉(<44微米)的浓度。测试结果用于评估槽尺寸和槽密度对砂控制性能的影响以及砂控制衬垫附近的孔隙堵塞和渗透性改变。我们观察到,槽尺寸,槽密度和流速高度影响生产的细粒的浓度和PSD以及屏幕上方的累积细粒(孔隙堵塞)。对于相同的流速和总注入的孔体积,较宽的屏幕孔径和更高的槽密度导致屏幕上方的较低的罚款累积,但打磨更多。此外,槽密度的变化改变了槽后面的流量会聚,从而改变了动员的细粒的尺寸和浓度。结果表明,筛选附近的较高的细粒浓度降低了保留的渗透性,因此降低了井眼生产率。本文提供了新的洞察孔堵漏和粉末迁移,靠近砂控制衬垫。它还介绍了一种新的测试方法,以优化沙子控制衬垫设计,以实现SAGD项目的最低生产力损伤。

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