Determination of effective pore size of nonwoven geotextiles based on low-field nuclear magnetic resonance technology
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(1.School of Water Conservancy, North China University of Water Resources and Electric Power; 2.Jilin Baishan Hydropower Plant, Songhuajiang Hydropower Co., Ltd.; 3.Xinanjiang Hydropower Plant of State Grid Xinyuan Group Co., Ltd.)

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    Abstract:

    In order to accurately determine the effective pore size of needle-punched nonwoven geotextiles, the wet sieving method and the low-field nuclear magnetic resonance (NMR) technology were used to carry out experimental research. The relationship curves between the cumulative percentage and the pore size were drawn, and the effective pore size value of nonwoven geotextiles was obtained and compared. The reliability of the low-field NMR measurement results was verified by combining the NMR imaging technology and Python programming pixel recognition method. The results show that the low-field NMR measurement technology with hydrogen atom as probe can accurately determine the effective pore size of nonwoven geotextiles. The combination of the NMR imaging technology and Python programming pixel recognition method can verify the accuracy of the low-field NMR technology in determining the effective pore size of nonwoven geotextiles. The low-field NMR measurement technology can avoid the shortcomings of the wet sieving method and improve the accuracy of the effective pore size measurement results.

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张宪雷,杨鹏鹏,马少帅.基于低场核磁共振技术的非织造土工织物有效孔径测定[J].水利水电科技进展,2026,46(2):91-96.(Zhang Xianlei, Yang Pengpeng, Ma Shaoshuai. Determination of effective pore size of nonwoven geotextiles based on low-field nuclear magnetic resonance technology[J]. Advances in Science and Technology of Water Resources,2026,46(2):91-96.(in Chinese))

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  • Received:March 05,2025
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  • Online: April 14,2026
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