主要研究方向: - (1) 非常规储层沉积环境及油气成因分析
- (2) 非常规储层表征及开采地质力学分析
- (3) 非常规储层碳储科学及环境安全分析
涉及学科: 沉积学,岩石学,石油地质,海洋地质,地球化学,岩石力学与岩土工程 研究手段: 显微光谱,分子和同位素,气液吸附,压痕技术,分子模拟,数值模拟 目前主攻内容: (1)固结和非固结储层岩石力学和流变学的多尺度表征技术研发与应用 (2)陆地页岩及海底泥质沉积物中有机黏土纳米复合体的资源环境效应 (3)页岩和水合物储层中的碳储耦合开采问题 基金项目: -
国家自然科学基金面上项目,42272182,2023.01-2026.12,74万,主持 -
广东省自然科学基金青年提升项目,2023A1515030280,2023.01-2025.12,30万,主持 -
广州市科技计划项目,2023A04J0208,2023.04-2025.03,5万,主持 -
国家自然科学基金面上项目,42073065,2021.01.01- 2024.12.31,61万元 -
国家自然科学基金青年基金,41802165,2019.01-2021.12,30万,主持 -
广东省自然科学基金面上项目,2018A030313234,2018.5.1-2021.10.30,10万,主持 -
中国博士后科学基金一等资助,2017M620391,2018.01-2021.08,8万,主持 -
中国科学院战略性先导科技专项课题,XDB10010500,2014/01-2019/12,600万 -
中国科学院战略性先导科技专项课题,XDA14010102,2017/05-2022/12,1050万 代表论著: -
( 1 )Jianfeng Wang, Chao Yang*, Yuke Liu, et al. Examining the reliability of current micro-and nano-indentation-based rock mechanical upscaling schemes: A comprehensive comparison with uniaxial/triaxial macroscopic mechanical testing. Submitted. -
( 2 )Chao Yang*; Yuke Liu, et al. Mechanical characterization of organic matter in Silurian Longmaxi Formation shale in South China using nanoindentation technique: Contributing to organic thermal evolution, shale maturity determination, and shale gas development. Submitted. -
( 3 )Jianfeng Wang, Yuke Liu*, Chao Yang, et al. Upscaling the creep behavior of clay-rich and quartz-rich shales from nanoindentation measurements: Application to the Wufeng-Longmaxi shale, China. International Journal of Rock Mechanics and Mining Sciences,2023,171, 105580. -
( 4 )Chao Yang; Yuke Liu*; Jianfeng Wang; Zheng Su**, Yongqiang Xiong. Application of nanoindentation technique in mechanical characterization of organic matter in shale: Attentive issues, test protocol, and technological prospect. Gas Science and Engineering, 2023, 113, 204966. -
( 5 )Yuke Liu; Chao Yang*; Jianfeng Wang; Yongqiang Xiong; Ping'an Peng. Rheology of Coal at Particle Level Characterized by Nanoindentation. Natural Resources Research, 2023, 32(3), 1359-1380. -
( 6 )Yuke Liu; Chao Yang*; Jianfeng Wang; Yongqiang Xiong; Ping'an Peng. New insights into the hydration-induced creep behavior of shale at the microscale using nanoindentation: A comparison study of brittle black shale and clayey oil shale at micro-scale. Marine and Petroleum Geology, 2022,138: 105554. -
( 7 )Qinyi Zhang, Daidai Wu, Guangrong Jin, Shengyi Mao, Jie Liu, Chao Yang, Lihua Liu, Xing Xu, Peining Yang, Yiyun Cao, Lihua Liu, Zheng Su. Novel use of unique minerals to reveal an intensified methane seep during the last glacial period in the South China Sea. Marine Geology, 2022, 452:106901 -
( 8 )Qinyi Zhang, Daidai Wu, Guangrong Jin, Xing Xu, Chao Yang, Lihua Liu. Methane seep in the Shenhu area of the South China sea using geochemical and mineralogical features. Marine and Petroleum Geology, 2022, 144:105829 -
( 9 )Chao Yang*; Liuhua Liu; Daidai Wu; Wenmin Jiang; Yun Li; Yongqiang Xiong. Unscrambling the source kitchen and hydrocarbon prospect of the ultra-deepwater area in southern Pearl River Mouth basin, South China Sea: Insights from the first ultra-deepwater exploration well W21 with CO2-containing hydrocarbon reservoirs, Journal of Petroleum Science and Engineering, 2022, 216: 110827, 1-19. -
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( 11 )Jianfeng Wang, Yuke Liu, Chao Yang, Wenmin Jiang*, Yun Li*, Yongqiang Xiong. Evolution of mechanical properties of kerogen with thermal maturity. Marine and Petroleum Geology, 2022, 145, 105906. -
( 12 )Jianfeng Wang; Chao Yang*; Yuke Liu; Yun Li; Yongqiang Xiong. Using Nanoindentation to Characterize the Mechanical and Creep Properties of Shale: Load and Loading Strain Rate Effects. ACS Omega, 2022, 7(16): 14317−14331. -
( 13 )Chao Yang; Yongqiang Xiong*; Jianfeng Wang; Yun Li; Wenmin Jiang. Mechanical characterization of shale matrix minerals using phase-positioned nanoindentation and nano-dynamic mechanical analysis. International Journal of Coal Geology, 2020, 229: 103571. -
( 14 )Chao Yang, Yongqiang Xiong*, Jinchuan Zhang. A comprehensive re-understanding of the OM-hosted nanopores in the marine Wufeng–Longmaxi shale formation in South China by organic petrology, gas adsorption, and X-ray diffraction studies. International Journal of Coal Geology, 2020,218, 103362. -
( 15 )Chao Yang, Yongqiang Xiong*, Jinchuan Zhang, Yuke Liu, and Cong Chen. Comprehensive Understanding of OM-Hosted Pores in Transitional Shale: A Case Study of Permian Longtan Shale in South China Based on Organic Petrographic Analysis, Gas Adsorption, and X-ray Diffraction Measurements. Energy & Fuels, 2019, 33, 9, 8055-8064. -
( 16 )Yang, Chao; Jinchuan Zhang*; Xiangzeng Wang; Xuan Tang; Yongchang Chen; Gong Xue. Nanoscale pore structure and fractal characteristics of a marine-continental transitional shale: A case study from the lower Permian Shanxi Shale in the southeastern Ordos Basin, China. Marine and Petroleum Geology,2018, 88: 54-68. -
( 17 )Chao Yang; Jinchuan Zhang*; Xuan Tang; Jianghui Ding; Qianru Zhao; Wei Dang; Haoyu Chen; Yang Su; Bowen Li; Dengfang Lu. Comparative study on micro-pore structure of marine, terrestrial, and transitional shales in key areas, China. International Journal of Coal Geology, 2017, 171: 76-92. -
( 18 )Chao Yang*; Jinchuan Zhang; Shuangbiao Han; Bing Xue; Qianru Zhao. Classification and the developmental regularity of organic-associated pores (OAP) through a comparative study of marine, transitional, and terrestrial shales in China.Journal of Gas Science and Engineering, 2016,36: 358-368. -
( 19 )Chao Yang*; Jinchuan Zhang; Shuangbiao Han; Xiangzeng Wang, Lin Wang, Wenwu Yu. Compositional controls on pore-size distribution by nitrogen adsorption technique in the Lower Permian Shanxi Shales, Ordos Basin. Journal of Gas Science and Engineering, 2016,34: 1369-1381. 招生方向: 欢迎具有石油地质学、地球化学以及石油工程、岩土工程等学科背景的学生报考;也欢迎具有化学与分子工程、材料科学、计算机科学等交叉学科背景的学生报考,共同开展机器学习、大数据、数值模拟等在清洁地质能源开发和碳地质封存中的应用研究。 联系方式: E-mail:yangchao@ms.giec.ac.cn |