Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory

The resistivity index is an important parameter for determining the rock saturation index. However, the saturation index changes greatly in unconventional reservoirs, which leads to oil saturation estimation with great difficulty. Hence, we try to establish the relationship between the resistivity i...

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Main Authors: Cheng Feng, Chuang Han, Wenxing Duan, Wei Wang, Yuntao Zhong, Ziyan Feng, Ning Zhang
Format: Article
Language:English
Published: Hindawi-Wiley 2020-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2020/8871096
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spelling doaj-f7e5879004474eb3ab72a160dd53e8322021-01-04T00:01:06ZengHindawi-WileyGeofluids1468-81232020-01-01202010.1155/2020/8871096Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal TheoryCheng Feng0Chuang Han1Wenxing Duan2Wei Wang3Yuntao Zhong4Ziyan Feng5Ning Zhang6Faculty of PetroleumResearch Institute of Exploration and DevelopmentResearch Institute of Exploration and DevelopmentResearch Institute of Exploration and DevelopmentFaculty of PetroleumFaculty of PetroleumFaculty of PetroleumThe resistivity index is an important parameter for determining the rock saturation index. However, the saturation index changes greatly in unconventional reservoirs, which leads to oil saturation estimation with great difficulty. Hence, we try to establish the relationship between the resistivity index and log data. Firstly, a novel model of estimating the resistivity index with T2 time was derived based on fractal theory, the relationship between nuclear magnetic resonance (NMR) T2 spectrum and capillary pressure curve (T2-Pc), and Archie formula. It regards the logarithm of the resistivity index as the dependent variable, with T2 time and T2 time when water saturation is 100% as the independent variables. Second, 17 cores were drilled, and T2 spectrum and the relationship between the resistivity index and water saturation (Ir-Sw) were jointly measured. Next, the experimental results were substituted into the established model to get the model parameters via the multivariate statistics regression method. Then, the experimental data engaged and not engaged in modeling were used to test the established model. The average relative errors of estimated resistivity indices and experimental results are smaller than 8%, and those of the regressed saturation index are smaller than 5%. Finally, the established model was applied in log data processing and interpretation with good effects. It thus proves that the method of the estimating resistivity index with T2 time is reliable, which provides a novel solution for determining rock electrical parameter of unconventional reservoirs.http://dx.doi.org/10.1155/2020/8871096
collection DOAJ
language English
format Article
sources DOAJ
author Cheng Feng
Chuang Han
Wenxing Duan
Wei Wang
Yuntao Zhong
Ziyan Feng
Ning Zhang
spellingShingle Cheng Feng
Chuang Han
Wenxing Duan
Wei Wang
Yuntao Zhong
Ziyan Feng
Ning Zhang
Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory
Geofluids
author_facet Cheng Feng
Chuang Han
Wenxing Duan
Wei Wang
Yuntao Zhong
Ziyan Feng
Ning Zhang
author_sort Cheng Feng
title Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory
title_short Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory
title_full Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory
title_fullStr Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory
title_full_unstemmed Estimation of the Resistivity Index via Nuclear Magnetic Resonance Log Data Based on Fractal Theory
title_sort estimation of the resistivity index via nuclear magnetic resonance log data based on fractal theory
publisher Hindawi-Wiley
series Geofluids
issn 1468-8123
publishDate 2020-01-01
description The resistivity index is an important parameter for determining the rock saturation index. However, the saturation index changes greatly in unconventional reservoirs, which leads to oil saturation estimation with great difficulty. Hence, we try to establish the relationship between the resistivity index and log data. Firstly, a novel model of estimating the resistivity index with T2 time was derived based on fractal theory, the relationship between nuclear magnetic resonance (NMR) T2 spectrum and capillary pressure curve (T2-Pc), and Archie formula. It regards the logarithm of the resistivity index as the dependent variable, with T2 time and T2 time when water saturation is 100% as the independent variables. Second, 17 cores were drilled, and T2 spectrum and the relationship between the resistivity index and water saturation (Ir-Sw) were jointly measured. Next, the experimental results were substituted into the established model to get the model parameters via the multivariate statistics regression method. Then, the experimental data engaged and not engaged in modeling were used to test the established model. The average relative errors of estimated resistivity indices and experimental results are smaller than 8%, and those of the regressed saturation index are smaller than 5%. Finally, the established model was applied in log data processing and interpretation with good effects. It thus proves that the method of the estimating resistivity index with T2 time is reliable, which provides a novel solution for determining rock electrical parameter of unconventional reservoirs.
url http://dx.doi.org/10.1155/2020/8871096
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