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Nuclear magnetic resonance experiments on the time-varying law of oil viscosity and wettability in high-multiple waterflooding sandstone cores

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摘要 A simulated oil viscosity prediction model is established according to the relationship between simulated oil viscosity and geometric mean value of T2spectrum,and the time-varying law of simulated oil viscosity in porous media is quantitatively characterized by nuclear magnetic resonance(NMR)experiments of high multiple waterflooding.A new NMR wettability index formula is derived based on NMR relaxation theory to quantitatively characterize the time-varying law of rock wettability during waterflooding combined with high-multiple waterflooding experiment in sandstone cores.The remaining oil viscosity in the core is positively correlated with the displacing water multiple.The remaining oil viscosity increases rapidly when the displacing water multiple is low,and increases slowly when the displacing water multiple is high.The variation of remaining oil viscosity is related to the reservoir heterogeneity.The stronger the reservoir homogeneity,the higher the content of heavy components in the remaining oil and the higher the viscosity.The reservoir wettability changes after water injection:the oil-wet reservoir changes into water-wet reservoir,while the water-wet reservoir becomes more hydrophilic;the degree of change enhances with the increase of displacing water multiple.There is a high correlation between the time-varying oil viscosity and the time-varying wettability,and the change of oil viscosity cannot be ignored.The NMR wettability index calculated by considering the change of oil viscosity is more consistent with the tested Amott(spontaneous imbibition)wettability index,which agrees more with the time-varying law of reservoir wettability.
出处 《Petroleum Exploration and Development》 SCIE 2024年第2期394-402,共9页 石油勘探与开发(英文版)
基金 Supported by the Original Exploration Project of National Natural Science Foundation of China(5215000105) Young Teachers Fund for Higher Education Institutions of Huo Yingdong Education Foundation(171043)。
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  • 1黄乔松,赵文杰,杨济泉,刘兵开.核磁共振渗透率模型研究与应用[J].青岛大学学报(自然科学版),2004,17(4):37-40. 被引量:16
  • 2兰玉波,赵永胜,魏国章.矿场密闭取心与室内模拟的驱油效率分析[J].大庆石油学院学报,2005,29(4):43-45. 被引量:25
  • 3谢然红,肖立志,邓克俊,廖广志,刘天定.二维核磁共振测井[J].测井技术,2005,29(5):430-434. 被引量:49
  • 4Zhang X,Li C H,Ye C H,et al.Determination of molecular self-diffusion coefficient using multiple spin-echo NMR spectroscopy with removal of convection and background gradient artifacts[J].Anal Chem,2001,73:3 528-3 534.
  • 5Kenyon W E.Petrophysical principles of applications of NMR logging[J].The Log Analyst,1997,38(2):21-43.
  • 6Timur A.Producible porosity and permeability of sandstone investigated through nuclear magnetic resonance principles[J].J Petrol Technol,1969,21:775-786.
  • 7Chakrabarty T,Longo J.A new method for mineral quantification to aid in hydrocarbon exploration and exploitation[J].J Can Petrol Technol,1997,36(11):15-21.
  • 8Kleinberg R L,Vinegar H J.NMR properties of reservoir fluids.The Log Analyst,1996,37(6):20-32.
  • 9Stephen Provencher W.A constrained regularization method for inverting data represented by linear algebraic or integral equations[J].Comput Phys Commun,1982,27:213-227.
  • 10Dunn K J,Latorraca G A,Warner J L,et al.On the calculation and interpretation of NMR relaxation time distributions[A].in SPE Paper 28369[C].Richardson,TX:Soc Retrol Eng,1994.

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