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Experimental investigation and theoretical modeling of stress-dependent permeability in naturally fractured tight gas reservoir

机译:天然骨质储气储层中应力依赖性渗透性的实验研究与理论建模

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Stress-dependent permeability (SDP) of naturally fractured tight gas reservoir (NFTGR) has drawn considerable attention in recent decades. The SDP of natural fracture (NF) is quite different from that of the rock matrix (RM) due to the variance NF width and NF filling degree. The SDP of naturally fractures can be obtained by conducting permeability measurement experiments on naturally fractured core plugs (NFCP). However, it is usually impossible to obtain downhole NFCPs due to economic and technical limitations. Our research group obtained various types of naturally fractured downhole core plugs from a NFTGR (Tarim filed, China) and make it possible to investigate the effect of NFs on SDP. The NF types of the downhole core plugs include RM core plug (RMCP), unpenetrated-ring fractured core plug (URFCP), penetrated-vertical fractured core plug (PVFCP), penetrated-incline fractured core plug (PIFCP), unpenetrated-U-type fractured core plug (UUFCP), and multiple fractured core plug (MFCP). We conducted SDP experiments through the application of pressure-pulse-decay (PPD) method. Results showed that the initial permeability of RMCP and MFCP were higher than that of others, and the permeability vanished stress of them were also highest, indicating that the flow resistance of RMCP and MFCP were lower than those of others. It is also shown that the degree of permeability stress-dependent (DPSD) varied from NF types. A modified exponential permeability model was derived to evaluate DPSD of natural fractured core plugs. Two parameters (gamma(sigma eff) and gamma(sigma eff)') were used to describe the DSDP in NFTGR, and the range of which were obtained from the experimental data by regression analysis. The reasonable gamma(sigma eff) and gamma(sigma eff) ' range of NFCP were also proposed in this paper. Sensitivity analysis showed that the influence gamma(sigma eff)' on SDP was more significant than that of gamma(sigma eff). The proposed model can be integrated to reservoir simulators and help to improve of oil and gas production prediction accuracy in NFTGRs.
机译:近几十年来,天然碎裂的紧煤层(NFTGR)的应力依赖性渗透率(SDP)造成了相当大的关注。由于方差NF宽度和NF填充度,自然骨折(NF)的SDP与岩矩阵(RM)的SDP完全不同。通过对天然裂缝芯塞(NFCP)进行渗透性测量实验,可以获得天然裂缝的SDP。但是,由于经济和技术限制,通常不可能获得井下NFCP。我们的研究小组从NFTGR获得了各种类型的自然断裂井下芯塞(Tarim提交),并可以探讨NFS对SDP的影响。井下芯插塞的NF类型包括RM芯插塞(RMCP),未平台环骨折芯插塞(URFCP),穿透垂直裂缝芯插塞(PVFCP),穿透倾斜的骨折芯插塞(PIFCP),未平台 - U-型碎屑芯插塞(UUFCP)和多个裂缝芯插塞(MFCP)。我们通过施加压力脉冲衰减(PPD)方法进行SDP实验。结果表明,RMCP和MFCP的初始渗透性高于其他渗透率,并且它们的渗透性消失胁迫也是最高的,表明RMCP和MFCP的流动性低于其它的流动性。还表明,从NF类型变化的渗透率依赖性(DPSD)的程度。推导出修改的指数渗透性模型,以评估天然裂缝芯塞的DPSD。使用两种参数(γ(Sigma Eff)和γ(Sigma Eff)')来描述NFTGR中的DSDP,其范围是通过回归分析从实验数据获得的范围。本文还提出了合理的γ(Sigma Eff)和γ(Sigma Eff)的NFCP系列。敏感性分析表明,SDP上的影响γ(Sigma Eff)'比γ(Sigma Eff)更显着。该拟议的模型可以集成到水库模拟器,并有助于提高NFTGRS的石油和天然气生产预测精度。

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