首页> 外文会议>SPE Latin American and Caribbean Petroleum Engineering Conference >Effects of Stress on Fracture Properties of Naturally Fractured Reservoirs
【24h】

Effects of Stress on Fracture Properties of Naturally Fractured Reservoirs

机译:应力对天然裂缝储层骨折性能的影响

获取原文

摘要

This paper analyzes the effect of stress on the rock properties fracture and matrix compressibilities, fracture and matrix porosities, and permeability in naturally fractured reservoirs (NFRs). In NFRs, fluids are stored inside the matrix pore space and inside the fractures of the rock. The reservoir characterization parameter indicating the volumetric fraction of fluids deposited inside the fractures is the storage capacity ratio, which is function of the fracture and matrix porosity, and fracture and matrix total compressibilities. Due to the difficulty to obtain these values, in reservoir engineering computations such as pressure transient analysis and reservoir simulation, among others, it is generally assumed that the matrix and the fracture total compressibilities are equal. This induces a big uncertainty in the estimation of the storage capacity ratio and leads to a wrong estimation of the volume of fluids inside the fractured rock. Changes in pore pressure due to production or injection of fluids affect the effective reservoir in-situ stress. The mechanical behavior of the fractured rock and its effects on the rock properties permeability, porosity and compressibility in the matrix and fracture frames are analyzed using the elastic properties bulk modulus and normal compliance of the fracture. These properties can be obtained from petrophysical core analysis or multi-component seismic interpretation, and linked to pressure transient analysis through the storage capacity ratio equation. A step-by-step procedure of the analysis is presented and illustrated with an example for quantifying the effects of changes in effective stress on the fracture and matrix compressibilities.
机译:本文分析了应力对岩石性能骨折和基质压缩性,裂缝和基质孔隙症的影响,以及天然裂缝储层(NFR)中的渗透性。在NFR中,流体储存在基质孔隙空间内部和岩石的裂缝内。表示沉积在裂缝内部的流体体积分数的储存表征参数是储存容量比,其是骨折和基质孔隙率的作用,以及裂缝和基质总压缩性。由于难以获得这些值,在储层工程计算中,例如压力瞬态分析和储存器模拟,其中通常假设基质和裂缝总压缩性等于。这在估计存储容量比中引起了大的不确定性,并导致裂缝岩石内的流体体积的错误估计。由于生产或注射流体引起的孔隙压力的变化会影响有效的储层原位应力。使用弹性特性块状模量和正常顺应性分析裂缝岩体的机械特性及其对基质和裂缝框架中的岩石性能渗透性,孔隙率和可压缩性的影响。这些性质可以从岩石物理核心分析或多分量地震解释中获得,并通过存储容量比等式连接到压力瞬态分析。提出和说明了分析的逐步过程,其中示出了用于量化有效应力变化对裂缝和矩阵压缩的影响。

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