4.7 Review

Determining the transverse surface relaxivity of reservoir rocks: A critical review and perspective

期刊

MARINE AND PETROLEUM GEOLOGY
卷 126, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.marpetgeo.2021.104934

关键词

Surface relaxivity; Low field NMR; Transverse relaxation time; Pore size distribution

资金

  1. Laboratory for Marine Mineral Resources, Qingdao National Laboratory for Marine Science and Technology [MMRZZ201805]
  2. Fundamental Research Funds for the Central Universities [19CX02006A, 18CX06025A]
  3. Shaanxi cooperative innovation center of unconventional oil and gas exploration and development (Xi'an Shiyou University) [SXCU-201904]
  4. Key Laboratory of Marine Mineral Resources, Ministry of Land and Resources [KLMMR-2018-B-03]
  5. Major National Science and Technology Projects of China [2017ZX05039-002]

向作者/读者索取更多资源

There is a growing interest in characterizing the pore structure of reservoir rocks using the low field nuclear magnetic resonance technique. The review and analysis recommend a composited experiment to measure the surface relaxivity and propose a possible workflow to obtain the variable surface relaxivity. It is important to use multi scale experiments to characterize the full-scale pore space and consider using multiple surface relaxivities for heterogeneous reservoir rocks.
There is a growing interest in characterizing the pore structure of reservoir rocks using the low field nuclear magnetic resonance technique. The transverse surface relaxivity is widely appreciated as the most significant parameter to connect the transverse relaxation (T-2) time and the pore size by scientists. In this study, we reviewed long-established and recently developed methods to predict the surface relaxivity over the last few decades. Moreover, the advantages, shortcomings, as well as the applications of the methods were discussed. What's more, the potential causes of affecting the surface relaxivity such as mineralogical compositions, reservoir conditions, fluid properties, and magnetic field strengths were investigated to analyze the controlling factors of the surface relaxivity. Based on the review and analysis, we recommended a composited experiment to measure the surface relaxivity and proposed a possible workflow to obtain the variable surface relaxivity. The review section shows that the surface relaxivity is generally calculated based on the specific surface area. There is no universally accepted method since each of the experiments only probes a part of the pore system or resolves pore size at a different length scale, and it is better to characterize the full-scale pore space using multi scale experiments. In addition, the constant surface relaxivity may not hold true for heterogeneous reservoir rocks with wide pore size distributions and the presence of paramagnetic minerals. It is a trend to use more than one surface relaxivity according to petrophysical facies or pore types. Multiple regressions may also serve as an effective way to get variable surface relaxivities. Further work needs to be done to develop a comprehensive understanding of the surface relaxivity, especially the influence of the spatial distribution of paramagnetic minerals which are extensively distributed in unconventional reservoirs such as shale and coal.

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