首页> 外文会议>SPE Hydraulic Fracturing Technology Conference >Evaluation of After-Closure Analysis Techniques for Tight and Shale Gas Formations
【24h】

Evaluation of After-Closure Analysis Techniques for Tight and Shale Gas Formations

机译:用于闭合和页岩气体形成的闭合后分析技术的评估

获取原文

摘要

Optimized hydraulic fracture design requires formation permeability as an input, but it is difficult to quantify in tight gas and shale gas reservoirs. After closure analysis (ACA) following a minifrac or fracture calibration test may offer a means to determine the formation permeability in cases for which both a formation test and a conventional pressure buildup test are impractical and/or unable to provide the permeability. However, ACA techniques use a variety of specialized plots, and there is a risk that apparent straight lines may lead to erroneous results. This paper proposes a technique that provides a simple way to calculate formation permeability, initial reservoir pressure, fracture length, and closure pressure from a single specialized plot. The proposed technique is compared with the G-function method for the estimation of the closure pressure. In addition, it is compared with 3 ACA techniques (Benelkadi, Gu, and G-Function) used in the literature to calculate formation permeability for tight gas and shale gas wells. Three field examples of pressure fall-off tests (in tight sand gas wells and shale gas well) are analyzed. The results show that the proposed technique provides a clear and rigorous analysis procedure for determination of permeability and other parameters required for the hydraulic fracture design. This proposed technique uses only a single plot comparing to the multiple plots required by the other techniques.
机译:优化的液压骨折设计需要形成渗透性作为输入,但难以在紧的气体和页岩气藏中量化。在微型裂纹或断裂校准测试后闭合分析(ACA)可以提供用于确定形成测试和常规压力累积测试的情况下的形成渗透性的方法是不切实际的和/或不能提供渗透性的方法。然而,ACA技术使用各种专业图,并且存在明显的直线可能导致错误结果的风险。本文提出了一种技术,其提供了一种从单个专业图中计算形成渗透率,初始储层压力,断裂长度和闭合压力的简单方法。将所提出的技术与用于估计闭合压力的G函数方法进行比较。此外,它与在文献中用于计算地层渗透率为致密气和页岩气井3个ACA技术(Benelkadi,谷,和G-功能)进行比较。分析了压力掉落试验的三个现场示例(在砂气井和页岩气井中)。结果表明,该提出的技术提供了一种清晰严格的分析程序,用于测定液压骨折设计所需的渗透性和其他参数。该提出的技术仅使用与其他技术所需的多个曲线进行比较。

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