首页> 外文会议>SPE Canada Heavy Oil Technical Conference >Numerical Assessment of the Maximum Operating Pressure for SAGD Projects Considering the Effects of Anisotropy and Natural Fractures in the Caprock
【24h】

Numerical Assessment of the Maximum Operating Pressure for SAGD Projects Considering the Effects of Anisotropy and Natural Fractures in the Caprock

机译:考虑载体各向异性和天然骨折的效果的裂缝工程最大工作压力的数值评价

获取原文

摘要

This paper presents a numerical assessment for the Maximum Operating Pressure (MOP) of a Steam Assisted Gravity Drainage (SAGD) project considering the effect of the Natural Fractures (NFs) and intrinsic anisotropy of the cap shale. Current numerical and heuristic assessments usually ignore the effect of the intrinsic and structural anisotropy of the cap shale in the caprock integrity studies. A coupled Hydro-Thermo-Mechanical (HTM) model was developed to assess the MOP. The coupled model employed a novel constitutive model which was developed to investigate the effect of NFs and intrinsic anisotropy in the cap shale. The coupled model was validated against surface heave measurements, and later utilized in a sensitivity study to assess the MOP for cases with different number of NF sets, fracture density and fracture dip angle. Results indicate that the MOP is highly sensitive to the fracture density and dip angle. According to the results, vertical fractures have minor effect on the MOP while oblique fractures with the dip angle between 25° to 65° significantly affect the MOP. Neglecting the NFs can lead to significant overestima-tion of the MOP. This highlights the necessity to include the NFs in the caprock integrity assessments. The numerical model presented in this paper considers the intrinsic anisotropy and the presence of NFs in the cap shale, while existing mathematical tools for caprock integrity studies have not incorporated the intrinsic and structural anisotropy. Ignoring the anisotropy in caprock can potentially cause a considerable overestimation of the MOP.
机译:本文介绍了蒸汽辅助重力排水(SAGD)项目的最大工作压力(MOP)的数值评估,考虑到天然骨折(NFS)和盖帽的内在各向异性的效果。目前的数值和启发式评估通常忽略帽子页岩中的内在和结构各向异性在脚轮完整性研究中的效果。开发了一种耦合的水热机械(HTM)模型来评估拖把。耦合模型采用了一种新的本构模型,该组成型模型是为了研究NFS和内在各向异性在帽子页岩中的影响。耦合模型对表面升降测量验证,后来用于敏感性研究,以评估具有不同数量的NF组,断裂密度和骨折倾角的情况的割割。结果表明,拖把对断裂密度和倾角非常敏感。根据结果​​,垂直骨折对拖把有微小的影响,而倾斜角在25°至65°之间的倾斜骨折显着影响拖把。忽视NFS可能导致拖把的大大高度高度。这突出了包括在CAPROCK完整性评估中包括NFS的必要性。本文呈现的数值模型考虑了内在的各向异性和帽页面中NFS的存在,而现有的谱系完整性研究的数学工具尚未包含内在和结构各向异性。忽略脚轮中的各向异性可能导致拖把的大量高估。

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