Meng He, Ye Yueming, Yang Cun, Dong Duo
State Key Lab of Marine Geology, Tongji University, Shanghai 200092, China.
PetroChina Hangzhou Research Institute of Geology, 920 Xixi Road, Hangzhou 310023, China.
ACS Omega. 2023 Aug 30;8(36):32615-32622. doi: 10.1021/acsomega.3c03193. eCollection 2023 Sep 12.
Due to the influence of multiple factors on the conductive properties of rocks, the Archie's formula, considering only a single factor, makes it difficult to reasonably explain rock-electric characteristics of cracked porous rocks. In order to better describe the conductive mechanism of cracked porous rocks, a generalized multifactor conductivity model was proposed by considering and introducing multiple influencing factors such as the series-parallel structure, conductive matrix, cracks, and fluids, which is conducive to more accurate research on the conductive mechanism of rocks. It should be noted that the developed model is not only applicable to cracked porous rocks but also useful for porous rocks. Through the study and analysis of various influencing factors, it is demonstrated by the simulation results that both the conductive matrix and cracks improve the conductive ability, which are crucial factors resulting in the non-Archie behavior and low-resistivity pay zone, and rock conductivity is more sensitive to the conductive matrix and cracks in tight reservoirs with porosity below 10%. Furthermore, experimental data are available to validate the novel multifactor conductivity model, and the comparison results show its advantages in predicting and explaining the conductive properties of cracked porous rocks.
由于多种因素对岩石导电特性产生影响,仅考虑单一因素的阿尔奇公式难以合理解释裂隙多孔岩石的岩电特性。为了更好地描述裂隙多孔岩石的导电机制,通过考虑并引入诸如串并联结构、导电基质、裂缝和流体等多种影响因素,提出了一种广义多因素导电模型,这有利于更准确地研究岩石的导电机制。需要注意的是,所建立的模型不仅适用于裂隙多孔岩石,对多孔岩石也同样适用。通过对各种影响因素的研究与分析,模拟结果表明导电基质和裂缝均提高了导电能力,它们是导致非阿尔奇行为和低电阻率产层的关键因素,并且在孔隙度低于10%的致密储层中,岩石导电性对导电基质和裂缝更为敏感。此外,有实验数据可用于验证新型多因素导电模型,比较结果显示了其在预测和解释裂隙多孔岩石导电特性方面的优势。