首页> 外文期刊>Geothermics >Estimating natural fracture orientations using geomechanics based stochastic analysis of microseismicity related to reservoir stimulation
【24h】

Estimating natural fracture orientations using geomechanics based stochastic analysis of microseismicity related to reservoir stimulation

机译:基于地质力学的基于地质力学的微震性随机分析估算与水库刺激的微震性的随机分析估算自然裂缝取向

获取原文
获取原文并翻译 | 示例
           

摘要

Natural Fractures are the primary pathways for fluid migration and production in geothermal reservoirs. Reactivation (and possible propagation) of natural fractures is an important component of stimulation, Slip on these natural fractures induces Microseismicity (MEQs) and the locations of MEQ events reveal aspects of stimulation. This work first presents a Geomechanics-Based Stochastic Analysis of Microseismicity (GBSAM) to quantitatively estimate natural fracture orientations from MEQs recorded during reservoir stimulation. This is achieved by combining geomechanics and geostatistics to better constrain uncertainties in natural fracture orientations. The reservoir response to pore pressure changes is modeled using a finite duration line source to simulate water injection. The mechanism for generating MEQs is based on Mohr Coulomb failure criterion while allowing one natural fracture to generate multiple MEQs. Mahalanobis distance, a type of similarity measure technique, is then used to measure the similarity between the simulated MEQ distribution and the field-observed MEQ distribution to find the best natural fracture distribution that fits the field-observed MEQ data. The natural fracture orientations which correspond to best simulated MEQ distribution in GBSAM are considered to be a realistic realization of the subsurface conditions. As an application, the proposed GBSAM is applied to Newberry EGS, and Fenton Hill HDR stimulations to estimate the natural fracture orientations of these two systems. Results from GBSAM show that the natural fractures dip and dip direction inverted from field-observed MEQ distribution are in good agreement with the field results reported from borehole televiewer.
机译:天然骨折是地热储层中流体迁移和生产的主要途径。自然骨折的再激活(和可能的繁殖)是刺激的重要组成部分,滑动这些天然骨折诱导微震性(MEQS)和MEQ事件的位置揭示了刺激的方面。这项工作首先提出了基于地质力学的随机分析微震性(GBSAM),从储层刺激期间记录的MEQS定量估计自然骨折取向。这是通过结合地质力学和地质数据来实现的,以更好地限制自然裂缝取向的不确定性。使用有限持续时间线源模拟注水的储层对孔隙压力变化的响应。生成MEQS的机制基于MoHR库仑故障标准,同时允许一个自然骨折产生多个MEQS。 Mahalanobis距离,一种相似度测量技术,然后用于测量模拟MEQ分布与现场观测的MEQ分布之间的相似性,以找到适合现场观察MEQ数据的最佳自然裂缝分布。与GBSAM中最佳模拟MEQ分布相对应的自然裂缝取向被认为是对地下条件的逼真的实现。作为申请,拟议的GBSAM应用于纽柏EGS,芬顿山HDR刺激,以估计这两个系统的自然裂缝取向。 GBSAM的结果表明,从现场观测的MEQ发行版中倒置的自然骨折和倾角与钻孔电视综合师报道的现场结果一致。

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