首页> 外文会议>Society of Petroleum Engineers Unconventional Resources Conference >Effect of Reservoir Heterogeneity on Improved Shale Oil Recovery by CO2 Huff-n-Puff
【24h】

Effect of Reservoir Heterogeneity on Improved Shale Oil Recovery by CO2 Huff-n-Puff

机译:储层异质性对CO2 HUFF-N-PUFF改善页岩油回收的影响

获取原文

摘要

An equation-of-state based compositional reservoir simulator, UT-COMP, is used to simulate the improved oil recovery by CO2 huff-n-puff in a shale matrix typical of the Bakken Formation. Non-aqueous components are carefully lumped into seven pseudo components. Permeability fields with various heterogeneity and correlation lengths are generated. UT-COMP is able to solve the compositional model, despite the permeability difference between the fracture and matrix being six orders of magnitude. Multiple cycles of CO2 huff-n-puff are simulated and compared with production by primary depressurization. The oil is first contact miscible with the injected CO2 under the reservoir pressure. Simulations show that primary recovery outperforms CO2 huff-n-puff in an ideally homogenous reservoir because injected CO2 moves deep into the reservoir without much increase in near-well pressure, while CO2 huff-n-puff outperforms primary recovery if there exists a low-permeability region which keeps CO2 in the near-well bore injection region. In the latter case, the final recovery using CO2 huff-n-puff is higher than that from primary depressurization; the recovery in a single cycle is about 3.3%, which increases to 3.5% in about 3 cycles. The recovery factor after 1000 days by primary depressurization with production pressure of 1000 psi is 11.6%, which is in agreement with existing studies. The recovery increase can be fit by a two-parameter exponential function and the rate coefficient is found to be insensitive to correlation length, while depends mainly on reservoir heterogeneity. A linear relationship between heterogeneity and rate coefficient is obtained. This work is the first to investigate the effect of heterogeneity on improved hydrocarbon recovery by CO2 huff-n-puff, and will be valuable in understanding the coupling between shale properties and oil recovery.
机译:基于方程式的基于组成储层模拟器UT-COMP,用于模拟Co2 Huff-N-Puff在典型的Bakken地层中的SHALE矩阵中的改善的油回收。将非水分成分小心地簇簇簇成7个伪组分。产生具有各种异质性和相关长度的渗透性场。 ut-comp能够解决组合模型,尽管骨折和矩阵之间的渗透性差异是六个数量级。通过初级减压模拟并与生产进行模拟的二氧化碳循环。在储层压力下,油是用注射的二氧化碳混溶的第一次接触。模拟表明,主要恢复在一个理想的均匀水库中占FO2 Huff-N-Puff,因为注入的CO2深入储层,在近井压力下没有大幅增加,而CO2 Huff-N-P-Puff如果存在低在井孔注射区域中保持CO2的渗透率区域。在后一种情况下,使用CO2 Huff-N-Puff的最终回收率高于原发性减压;单个循环中的恢复约为3.3%,约3个循环增加到3.5%。通过初级减压1000天后的回收因子具有1000psi的生产压力为11.6%,这与现有研究一致。恢复增加可以通过双参数指数函数符合,并且发现速率系数对相关长度不敏感,同时主要取决于储层异质性。获得异质性和速率系数之间的线性关系。这项工作是第一个探讨异质性对Co2 Huff-N-Puff改善的烃恢复效果的影响,并且在理解页岩性质和溢油之间的偶联方面将是有价值的。

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