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副教授

副教授

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王子明

职称:副教授、博士生导师
电话:0592-2186802
邮箱:zmwang@xmu.edu.cn

个人简历

1. T. Ye, D. Zheng, J. Pan, Z. Fan, J. Zhang, Z. M. Wang*. Aging FeCO3 films for mitigating steel corrosion induced by temperature drops in dense phase CO2 environments with confined free water. Corrosion Science 256 (2025) 113170

2. 王子明*,李清平,李姜辉,范振宁,张建. 海洋CO2管道输送技术现状与展望. 中国工程科学26(2)(2024) 74-91.

3. X. Wang, J. Ouyang, Z.M. Wang*. Exploring the dynamic mechanism of water wetting induced corrosion on differently pre-wetted surfaces in oil-water flows. Journal of Colloid and Interface Science 664 (2024) 284–298.

4. H. Hong, T. Ye, J. Zhang, Z.M. Wang*. Corrosion mitigation behavior of mild steel in supercritical CO2 environments with varying the solution volume. Corrosion Science 229 (2024) 111853.

5. X. Wang, Z.M. Wang*. Micro-seepage directed evaporation and salt nucleation of a brine droplet on oil-impregnated steel surfaces. Surface & Coatings Technology 455 (2023) 129160

6. J. Feng, Z.M. Wang*, D. Zheng, G.-L. Song*. The localized corrosion of mild steel in carbonated cement pore solution under supercritical carbon-dioxide in a simulated geothermal environment. Construction and Building Materials 274 (2021) 122035.

7. K. Wang, Z.M. Wang*, G.-L. Song*. Batch Transportation of Oil and Water for Reducing Pipeline Corrosion, Journal of Petroleum Science and Engineering 195 (2020) 107583.

8. Z.M. Wang*, Q.Y. Lun, J. Wang, X. Han, J. Zhang, G.-L. Song*. Corrosion mitigation behavior of an alternately wetted steel electrode in oil/water media. Corrosion Science 152 (2019) 140-152

9. Z.M. Wang, G.-L. Song*. An Analytical Model for the Corrosion Risk of Water Alternating Gas Injection Wells in CO2 Enhanced Oil Recovery, Advanced Theory & Simulations 1 (2018) 1800041

10. A.Q. Liu, C. Bian, Z.M. Wang*, X. Han, J. Zhang. Flow dependence of steel corrosion in supercritical CO2 environments with different water concentrations, Corrosion Science 134 (2018) 149-161

完整文章链接

ORCID: https://orcid.org/0000-0003-2087-6475

ScholarGoogle (Zi Ming Wang): https://scholar.google.com/citations?user=DbhGHwkAAAAJ&hl=en

研究领域

腐蚀电化学(Corrosion Electrochemistry): 面向现代工业服役环境,研发多相、高阻、受限、极端环境腐蚀电化学表征与监测的先进技术方法,构建复杂场景下材料腐蚀电化学理论。

腐蚀数智化管控(AI for Corrosion): 以全生命周期服役安全为目标,聚焦材料腐蚀机制的深度解析,形成工业过程腐蚀控制的理论模型,融合多源数据动态监测,推动智能化防腐体系的建立和应用。

深海腐蚀防护(Deepsea Corrosion): 聚焦深海环境下防护涂层和金属材料的腐蚀评估、预测及延寿技术,发展高耐蚀新材料。

主讲课程

1. 材料科学基础(本科生专业基础课,2018年至今)

2. 工程伦理(研究生专业必修课,2018年至今)

3. 生产实习(本科生专业必修课,2018年至2024年)

主要科研成果

近年来,课题组紧密围绕“海洋强国”、“碳达峰、碳中和”等重大国家战略需求,在多相流腐蚀、CCUS腐蚀、深海装备腐蚀防护等方向取得一些较有特色的研究进展。

多相流腐蚀方向:研发的油水交替润湿腐蚀模拟方法已获得行业认可和跟踪研究,进而揭示多相流腐蚀的近壁流体驱替机制,并提出储油表面与流动管理协同的新型腐蚀控制策略;研发的“气卷液腐蚀风险评估模型”已用于指导某油田页岩油开发的集输管道工程设计。

碳捕集、利用与封存(CCUS)腐蚀方向:发现管输CO2环境受限水腐蚀抑制现象,并探究FeCO3成膜的空间限域机制,初步构建CO2管道腐蚀防控的新策略;研发的“CO2气水交替注入井筒腐蚀风险预测模型”已应用于某工程CO2注入井的工艺管理。

深海涂层防护方向:验证了附着力对金属/涂层界面腐蚀扩展的主控机制,研发了基于界面增强的深海涂层延寿技术;初步构建了深海涂层腐蚀扩展的预测模型。

主要代表学术论著与论文

1. T. Ye, D. Zheng, J. Pan, Z. Fan, J. Zhang, Z. M. Wang*. Aging FeCO3 films for mitigating steel corrosion induced by temperature drops in dense phase CO2 environments with confined free water. Corrosion Science 256 (2025) 113170

2. 王子明*,李清平,李姜辉,范振宁,张建. 海洋CO2管道输送技术现状与展望. 中国工程科学26(2)(2024) 74-91.

3. X. Wang, J. Ouyang, Z.M. Wang*. Exploring the dynamic mechanism of water wetting induced corrosion on differently pre-wetted surfaces in oil-water flows. Journal of Colloid and Interface Science 664 (2024) 284–298.

4. H. Hong, T. Ye, J. Zhang, Z.M. Wang*. Corrosion mitigation behavior of mild steel in supercritical CO2 environments with varying the solution volume. Corrosion Science 229 (2024) 111853.

5. X. Wang, Z.M. Wang*. Micro-seepage directed evaporation and salt nucleation of a brine droplet on oil-impregnated steel surfaces. Surface & Coatings Technology 455 (2023) 129160

6. J. Feng, Z.M. Wang*, D. Zheng, G.-L. Song*. The localized corrosion of mild steel in carbonated cement pore solution under supercritical carbon-dioxide in a simulated geothermal environment. Construction and Building Materials 274 (2021) 122035.

7. K. Wang, Z.M. Wang*, G.-L. Song*. Batch Transportation of Oil and Water for Reducing Pipeline Corrosion, Journal of Petroleum Science and Engineering 195 (2020) 107583.

8. Z.M. Wang*, Q.Y. Lun, J. Wang, X. Han, J. Zhang, G.-L. Song*. Corrosion mitigation behavior of an alternately wetted steel electrode in oil/water media. Corrosion Science 152 (2019) 140-152

9. Z.M. Wang, G.-L. Song*. An Analytical Model for the Corrosion Risk of Water Alternating Gas Injection Wells in CO2 Enhanced Oil Recovery, Advanced Theory & Simulations 1 (2018) 1800041

10. A.Q. Liu, C. Bian, Z.M. Wang*, X. Han, J. Zhang. Flow dependence of steel corrosion in supercritical CO2 environments with different water concentrations, Corrosion Science 134 (2018) 149-161

完整文章链接

ORCID: https://orcid.org/0000-0003-2087-6475

ScholarGoogle (Zi Ming Wang): https://scholar.google.com/citations?user=DbhGHwkAAAAJ&hl=en

学位 职称 副教授、博士生导师
研究室 所在部门
电子邮件 zmwang@xmu.edu.cn 电话 0592-2186802
课题组网站

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