首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Well test, rate transient analysis and reservoir simulation for characterizing multi-fractured unconventional oil and gas reservoirs
【24h】

Well test, rate transient analysis and reservoir simulation for characterizing multi-fractured unconventional oil and gas reservoirs

机译:表征多裂缝非常规油气藏的试井,速率瞬态分析和油藏模拟

获取原文
           

摘要

Unconventional reservoirs such as shale gas and shale oil have become an increasingly important source of energy in the USA with potential reservoirs identified worldwide. Due to the insufficient permeability of the shale reservoirs, they require efficient stimulation using multi-stage hydraulic fractures to produce gas in commercial quantities. A critical challenge in the reservoirs is performance evaluation of the fracturing and characterization of the stimulated reservoir volume (SRV) for permeability and hydraulic fracture size. Conventional well test analysis in multi-stage fractured shale reservoirs may not provide reliable results due to the extensive wellbore storage effect, fracture complexities, and heterogeneity of the low-permeability reservoir. To overcome such issues, advanced well test analysis techniques integrated with rate transient analysis can be used to reduce uncertainties associated with estimation of the reservoir and hydraulic fractures’ dynamic parameters. This paper proposes a practical methodology and workflow for characterizing the SRV parameters in multi-fractured wells in unconventional oil and gas reservoirs using well test and rate transient data analysis based on diffusivity equation solution for linear and elliptical flow regimes integrated with numerical reservoir simulation. A reservoir simulation model is built and run for a typical fractured shale reservoir to verify the reliability of the proposed simplified approach. Furthermore, multi-fractured unconventional reservoir field examples of well test analysis, reservoir simulation and history matching are presented to show how the stimulated reservoir volume can be characterized to perform a more reliable production forecast in shale oil and shale gas reservoirs.
机译:页岩气和页岩油等非常规油藏在美国已成为越来越重要的能源,全球已发现了潜在的油藏。由于页岩储集层的渗透性不足,它们需要使用多级水力压裂技术进行有效增产,以生产商业量的天然气。储层中的关键挑战是压裂性能评估和增产储层(SRV)的渗透率和水力压裂尺寸特征。由于广泛的井筒储存效应,裂缝复杂性和低渗透油藏的非均质性,在多级裂缝性页岩油藏中进行常规的试井分析可能无法提供可靠的结果。为了克服这些问题,可以将先进的试井分析技术与速率瞬态分析相结合,以减少与估算储层和水力压裂动态参数相关的不确定性。本文提出了一种实用的方法和工作流程,通过基于线性和椭圆形流态的扩散率方程解的井试和速率瞬变数据分析,并结合数值油藏模拟,来表征非常规油气藏的多裂井中的SRV参数。针对典型的裂缝性页岩油藏建立并运行油藏模拟模型,以验证所提出简化方法的可靠性。此外,还提供了多口非常规储层的实例,包括试井分析,储层模拟和历史记录匹配,以说明如何表征增产油藏的体积,以便在页岩油和页岩气储层中进行更可靠的产量预测。

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