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Investigating petrophysical properties of gas hydrate-bearing sediments using digital rock technology:A microscopic perspective
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作者 Yang-Chen Fan Wei-Chao Yan +4 位作者 hui-lin xing Xiu-Juan Wang Huai-Min Dong Xi-Mei Jiang Ji-Lin Zhou 《Petroleum Science》 2025年第5期1889-1911,共23页
Natural gas hydrates are crystalline solid complexes with different morphologies found in marine sediments and permafrost zones. The petrophysical properties of gas hydrate-bearing sediments(GHBS) are crucial for unde... Natural gas hydrates are crystalline solid complexes with different morphologies found in marine sediments and permafrost zones. The petrophysical properties of gas hydrate-bearing sediments(GHBS) are crucial for understanding the characteristics of gas hydrate reservoirs, the spatial distribution of natural gas hydrates, and their exploitation potential. Geophysical exploration remains the primary approach for investigating the petrophysical properties of GHBS. However, limitations in resolution make it challenging to accurately characterize complex sediment structures, leading to difficulties in precisely interpreting petrophysical properties. Laboratory-based petrophysical experiments provide highly accurate results for petrophysical properties. Despite their accuracy, these experiments are costly, and difficulties in controlling variables may introduce uncertainties into geophysical exploration models.Advances in imaging and simulation techniques have established digital rock technology as an indispensable tool for enhancing petrophysical experimentation. This technology offers a novel microscopic perspective for elucidating the three-dimensional(3D) spatial distribution and multi-physical responses of GHBS. This paper presents an in-depth discussion of digital rock technology as applied to GHBS, with an emphasis on digital rock reconstruction and simulation of petrophysical properties. First, we summarize two common methods for constructing digital rocks of GHBS: petrophysical experimental methods and numerical reconstruction methods, followed by analyses of their respective advantages and limitations. Next, we delve into numerical simulation methods for evaluating GHBS petrophysical properties, including electrical, elastic, and fluid flow characteristics. Finally, we conduct a comprehensive analysis of the current trends in digital rock reconstruction and petrophysical simulation techniques for GHBS, emphasizing the necessity of multi-scale, multi-component, high-resolution 3D digital rock models to facilitate the precise characterization of complex gas hydrate reservoirs. Future applications of microscopic digital rock technology should be integrated with macroscopic geophysical exploration to enable more comprehensive and precise analyses of GHBS petrophysical properties. 展开更多
关键词 Digital rock Gas hydrate Petrophysical properties Numerical simulation
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PBL联合情景模拟教学法在肾内科住院医师规范化教学中的应用研究 被引量:9
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作者 石岩 刑晖林 +2 位作者 吕强 刘云 郭明好 《数理医药学杂志》 CAS 2023年第2期155-160,共6页
目的 探讨PBL联合情景模拟教学法在肾内科住院医师规范化培训中的应用效果。方法 选择2021年8月至2022年7月在新乡医学院第一附属医院肾脏病医院肾内科接受培训的80名住院医师,采用随机数字表法分为干预组和对照组,每组40人。干预组采用... 目的 探讨PBL联合情景模拟教学法在肾内科住院医师规范化培训中的应用效果。方法 选择2021年8月至2022年7月在新乡医学院第一附属医院肾脏病医院肾内科接受培训的80名住院医师,采用随机数字表法分为干预组和对照组,每组40人。干预组采用PBL联合情景模拟教学法,对照组采用传统授课教学法。培训结束后,实行统一出科考核考题,采用调查问卷进行满意度评分及学习积极主动性量表评估两组学员的教学成果。结果 干预组学员的出科成绩、教学满意度均优于对照组(P <0.05),学习积极主动性高于对照组,差异有统计学意义(P <0.05)。结论 在肾内科住院医师规范化培训中,PBL教学法联合情景模拟教学法能提高规培医生的临床实践能力、团队协助能力和人文关怀能力,具有应用创新和实践价值,值得进一步推广。 展开更多
关键词 PBL 情景模拟教学 肾内科 住院医师 规范化培训
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