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Nuclear magnetic resonance(NMR) microscopic simulation based on random-walk: Theory and parameters analysis 被引量:1
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作者 谭茂金 晶晶 +1 位作者 邹友龙 徐赤诚 《Journal of Central South University》 SCIE EI CAS 2014年第3期1091-1097,共7页
The microscopic response characteristics of nuclear magnetic resonance(NMR) are widely used for characterizing complex pore structures of rocks. Due to the prohibitive NMR experiment cost, numerical simulation was emp... The microscopic response characteristics of nuclear magnetic resonance(NMR) are widely used for characterizing complex pore structures of rocks. Due to the prohibitive NMR experiment cost, numerical simulation was employed as an alternative approach to verify some theoretical aspects of NMR responses. Firstly, the basic principles of pore-scale NMR simulation based on random-walk method(RWM) were introduced. The RWM-simulated results were benchmarked with the analytical results for an ideal spherical pore model. Then, the effects of two numerical parameters, namely diffusion radius and walk numbers, were studied on the simulation accuracy. The simulation method is then applied to various pore models with different pore sizes and pore shapes filled with different fluids to study the microscopic NMR response characteristics. The numerical experiments are useful for understanding and interpreting NMR measurements and the simulation code provides a numerical tool to perform pixel-based digital rock analysis. 展开更多
关键词 微观仿真 核磁共振 随机行走 NMR 基础 岩石孔隙结构 数值模拟 响应特性
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