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DOI10.1306/0425171609817007
Fractal analysis of tight shaly sandstones using nuclear magnetic resonance measurements
Lai, Jin1; Wang, Guiwen2; Fan, Zhuoying2; Zhou, Zhenglong2; Chen, Jing2; Wang, Shuchen2
2018-02-01
发表期刊AAPG BULLETIN
ISSN0149-1423
EISSN1558-9153
出版年2018
卷号102期号:2页码:175-193
文章类型Article
语种英语
国家Peoples R China
英文摘要

Assessing quantitatively the microscopic pore structures of porous rocks, including irregularities of pore shapes and pore size distributions, is becoming one of the most challenging efforts. Nuclear magnetic resonance (NMR) measurements were used to provide insights into the pore geometry (pore size and shape) and pore connectivity of the Chang 7 tight shaly sandstones (in situ permeability <0.1 md) in Ordos basin. The incremental transverse relaxation time (T-2) distributions for the 100% brine-saturated samples display unimodal and bimodal behaviors, presenting a geometrical arrangement composed of small to large pore size domains. The NMR parameters such as bulk volume irreducible (BVI) (capillary and clay-bound water), free fluid index (FFI) (movable water), the value of T-2 separating the BVI from FFI, the amplitude weighted mean on a logarithmic scale (T-2gm), and the value of T-2 that shows the highest frequency on the T-2 spectrum (T-2peak) for each sample were determined. Then the fractal theory was adopted to quantitatively express the complexity and heterogeneity of the sandstones. The results show that only minor primary intergranular porosity remains, and variable amounts of micropores and secondary intragranular porosity with poor connectivity occur in the Chang 7 tight shaly sandstones. Assuming spherical pores, a new model to calculate the fractal dimension of pore structure from the NMR T-2 distributions is proposed. The fractal dimensions of all the samples are calculated, and the accuracy of the proposed model is verified by the regression coefficients. The microscopic pore structures are heterogeneous in these tight sandstones according to the high value of fractal dimensions. Micropores are the primary causes of heterogeneity in tight sandstones, and samples with unimodal T-2 distribution behaviors and high content of short components have the highest fractal dimension and heterogeneity. The calculated fractal dimension is strongly correlated with T-2peak and T-2gm; therefore, the fractal model proposed in this study can be used to calculate the fractal dimensions and evaluate the heterogeneities of the porous rocks satisfactorily. The fractal model proposed in this study helps to quantitatively assess the pore structures of tight sandstones using NMR measurements.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000430928600001
WOS关键词TRIASSIC YANCHANG FORMATION ; PORE STRUCTURE CHARACTERIZATION ; ORDOS BASIN ; MERCURY INTRUSION ; NMR RELAXATION ; DIAGENETIC CHANGES ; RESERVOIR QUALITY ; LOW PERMEABILITY ; GAS-ADSORPTION ; OIL SANDSTONES
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/24485
专题地球科学
作者单位1.China Univ Petr, Coll Geosci, State Key Lab Petr Resources & Prospecting, Fuxue Rd 18, Beijing 102249, Peoples R China;
2.China Univ Petr, State Key Lab Petr Resources & Prospecting, Fuxue Rd 18, Beijing 102249, Peoples R China
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GB/T 7714
Lai, Jin,Wang, Guiwen,Fan, Zhuoying,et al. Fractal analysis of tight shaly sandstones using nuclear magnetic resonance measurements[J]. AAPG BULLETIN,2018,102(2):175-193.
APA Lai, Jin,Wang, Guiwen,Fan, Zhuoying,Zhou, Zhenglong,Chen, Jing,&Wang, Shuchen.(2018).Fractal analysis of tight shaly sandstones using nuclear magnetic resonance measurements.AAPG BULLETIN,102(2),175-193.
MLA Lai, Jin,et al."Fractal analysis of tight shaly sandstones using nuclear magnetic resonance measurements".AAPG BULLETIN 102.2(2018):175-193.
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