方志明
个人信息Personal Information

性别:

职称: 副研究员

职务:

学历: 博士研究生

电话: 027-87198967

传真: 027-87198967

电子邮件: zmfang@whrsm.ac.cn

通讯地址:

湖北省武汉市武昌区水果湖街小洪山2号 中国科学院武汉岩土力学研究所

简 历Personal Profile

  • 方志明,男,1981年生,湖北黄冈人,博士,中国科学院武汉岩土力学研究所副研究员,硕士生导师长期致力于二氧化碳地质利用与封存监测技术研发与示范、二氧化碳煤层封存与驱煤层气技术、二氧化碳协同深部非常规油气资源开发技术等方面的研究工作,曾赴澳大利亚昆士兰大学UQ)开展访问研究。主持国家自然科学基金项目2项,主持“十二五”国家科技支撑计划项目课题湖北省重点研发项目1项,负责国家重点发项目子课题3项,曾获湖北省科技进步一等奖1、中国煤炭工业科学技术奖一等奖1项。发表学术论文60余篇,授权发明专利30余项。

    方志明是我国最早开展二氧化碳煤层封存及驱煤层气技术研究的学者之一,首次提出了混合气体驱煤层气技术,并开展相关研究工作。

        2009~迄今,中国科学院武汉岩土力学研究所 助理研究员、副研究员(其间,2015.3~2015.9澳大利亚昆士兰大学访问学者)

        2004~2009,中国科学院武汉岩土力学研究所 岩土工程 博士

        2000~2004,西南交通大学土木工程学院 岩土工程 本科

  • 研究方向Research Focus
  • 社会任职Social Service
  • 承担科研项目情况Undertaking Research Projects
  • 氧化碳地质利用与封存监测技术研发与示范;

    二氧化碳煤层封存与驱煤层气技术;

    二氧化碳协同深部非常规油气资源开发技术;

    低渗透岩石渗流问题及测试技术


  • 国家自然科学基金多个学科通讯评委,二氧化碳地质利用与封存、煤层气开发以及岩土力学与工程领域多个国内外著名期刊审稿专家。

  • [1] 企业委托横向项目,二氧化碳注入试验CO2监测,项目负责人,2026.5-2027.1.

    [2] 湖北省科技计划项目,低能耗二氧化碳捕集与协同资源开采利用封存技术,项目负责人,2025.8-2027.8.

    [3] “十四五”国家重点研发计划项目,CO2驱煤层气与封存技术,子课题执行负责人2024.12-2028.11.

    [4] “十四五”国家重点研发计划项目,CO2驱油及封存安全监测技术,子课题负责人2023.12-2027.11.

    [5] “十四五”国家重大科技基础设施,深部岩土工程扰动模拟设施,制样舱负责人,2023-2026.

    [6] 内蒙古自治区中央引导地方科技发展资金项目,浅埋巨厚煤层气CO2驱替技术研究,课题负责人,2022.8-2024.8.

    [7] “十三五”国家重点研发计划项目,CO2驱煤层气关键技术,子课题负责人,2018.05-2021.04.

    [8] 国家自然科学基金面上项目,CO2与粘土相互作用的机理及其对盖层密封性的影响研究,项目负责人,2015.1-2018.12.

    [9] “十二五”国家科技支撑计划项目,燃煤电厂CO2捕集、驱替煤层气利用与封存技术研究与试验示范,课题负责人,2015.1-2017.12.

    [10 壳牌石油,CO2与粘土微观作用研究,项目负责人,2012.4-2015.4.

    [11] 国家自然科学基金青年基金项目,地层约束条件下N2/CO2混合气体驱替煤层气的机理及最佳气体组合比研究,项目负责人,2012.1-2014.12.

    [12] “十二五”中国地质调查局公益性项目,全国煤田二氧化碳地质储存潜力与适宜性评价,项目负责人,2011.7-2011.12.


  • 代表论著Representative Treatises
  • 获奖及荣誉Awards and Honors
  • [1] Zhiming Fang*, Chenlong Yang, Shaicheng Shen. Experimental investigation of CO2-enhanced coalbed methane recovery using large intact coal cores. Journal of CO2 Utilization, Volume 100, October 2025, 103185.

    [2] Zhiming Fang*, Chenlong Yang, Rundong Wang. Monitoring technologies for CO₂ storage in coal seams and enhanced coalbed methane recovery: A review of field applications. Fuel Processing Technology, Volume 276, 2025, 108274.

    [3] Zhiming Fang*, Chenlong Yang, Shaicheng Shen. Influence of Stress on Gas Sorption Behavior and Induced Swelling in Coal: Implications for Sustainable CO2 Geological Storage. Sustainability 2025, 17(20), 8990.

    [4] Zhiming Fang*, Shaicheng Shen. Optimizing enhanced coalbed methane recovery in thick lignite formations: An integrated technical and economic evaluation. Results in Engineering, Volume 27, September 2025, 106733.

    [5] Shaicheng Shen, Zhiming Fang*, Xiaochun Li, Quan Jiang, Haimeng Shen, and Lu Shi. Enhanced Coalbed Methane Recovery from Lignite Using CO2 and N2. Energy & Fuels 2025 39 (22), 10394-10409.

    [6] Chenlong Yang, Zhiming Fang*, Shaicheng Shen, Haibin Wang. Enhancing Recovery of Low-Productivity Coalbed Methane Wells in Medium-Shallow Reservoirs by CO2 Huff-and-Puff. Separations 2025, 12(11), 314.

    [7] 方志明*, 王润东, 杨晨龙. 深部煤层气开发的机遇与挑战. 中国矿业大学学报, 2025, 54(1), 34-51.

    [8] Shaicheng Shen, Zhiming Fang*, Xiaochun Li, Quan Xue, Huilin Ci. Experiment on the gas permeability and gas-water relative permeability in high-rank coal with a self-developed device. Energy & Fuels, 2023, 37(3), 12.

    [9] Shaicheng Shen, Zhiming Fang*, Xiaochun Li. A novel method for determining water saturation of porous media in relative permeability measurement using DPT. Measurement Science and Technology, 2023,34(3), 035901.

    [10] Shaicheng Shen, Zhiming Fang*, Xiaochun Li. Laboratory Measurements of the Relative Permeability of Coal: A Review. Energies, 2020, 13.

    [11] Shaicheng Shen, Xiaochun Li, Zhiming Fang*, Nao Shen. Effect of Gas Adsorption on the Application of the Pulse-Decay Technique. Geofluids, 2020.

    [12] Shoujian Peng, Zhiming Fang, Jian Shen, et al. Effects of gas sorption-induced swelling/shrinkage on the cleat compressibility of coal under different bedding directions. Sci Rep 7, 14337 (2017).

    [13] Zhiming Fang, Xiaochun Li. A preliminary evaluation of carbon dioxide storage capacity in unmineable coalbeds in China. Acta Geotech. 9, 109–114 (2014).

    [14] Xiaochun Li, Zhiming Fang. Current status and technical challenges of CO2storage in coal seams and enhanced coalbed methane recovery: an overview. International Journal of Coal Science & Technology, 2014,1(1):93102.

    [15] Zhiming Fang, Xiaochun Li, Lin Huang. Laboratory measurement and modelling of coal permeability with different gases adsorption. International Journal of Oil Gas & Coal Technology, 2013, 6(5):567-580.

    [16] Zhiming Fang, Xiaochun Li, Geoff Guoxiong, Wang. A gas mixture enhanced coalbed methane recovery technology applied to underground coal mines. Journal of Mining Science, 2013, 49(1):106-117.

    [17] Zhiming Fang, Xiaochun Li. Experimental Study of Gas Adsorption-induced Coal Swelling and its Influence on Permeability. Disaster Advances, 2012, 5(4):769-773.

    [18] Zhiming Fang, Xiaochun Li. Preliminary assessment of CO2 geological storage potential in Chongqing, China. Procedia Environmental Sciences, 2011, 11(part-PC): 1064-1071.

    [19] Zhiming Fang, Xiaochun Li, Haixiang Hu.Gas mixture enhance coalbed methane recovery technology: Pilot tests. Energy Procedia, 2011, 4(1):2144-2149.

    [20] 方志明, 李小春, 李洪等. 混合气体驱替煤层气技术的可行性研究. 岩土力学, 2010, 31(10):3223-3229.

    [21] 李小春, 方志明. 中国CO2地质埋存关联技术的现状.岩土力学, 2007, (10):2229-2233+2239.

    [22] 方志明,李小春,白冰.煤岩吸附量-变形-渗透系数同时测量方法研究[J].岩石力学与工程学报,2009,28(09):1828-1833.


  • 湖北省科技进步一等奖2017

    中国煤炭工业科学技术奖一等奖(2018)。


研究方向Research Focus

氧化碳地质利用与封存监测技术研发与示范;

二氧化碳煤层封存与驱煤层气技术;

二氧化碳协同深部非常规油气资源开发技术;

低渗透岩石渗流问题及测试技术


社会任职Social Service

国家自然科学基金多个学科通讯评委,二氧化碳地质利用与封存、煤层气开发以及岩土力学与工程领域多个国内外著名期刊审稿专家。

承担科研项目情况Undertaking Research Projects

[1] 企业委托横向项目,二氧化碳注入试验CO2监测,项目负责人,2026.5-2027.1.

[2] 湖北省科技计划项目,低能耗二氧化碳捕集与协同资源开采利用封存技术,项目负责人,2025.8-2027.8.

[3] “十四五”国家重点研发计划项目,CO2驱煤层气与封存技术,子课题执行负责人2024.12-2028.11.

[4] “十四五”国家重点研发计划项目,CO2驱油及封存安全监测技术,子课题负责人2023.12-2027.11.

[5] “十四五”国家重大科技基础设施,深部岩土工程扰动模拟设施,制样舱负责人,2023-2026.

[6] 内蒙古自治区中央引导地方科技发展资金项目,浅埋巨厚煤层气CO2驱替技术研究,课题负责人,2022.8-2024.8.

[7] “十三五”国家重点研发计划项目,CO2驱煤层气关键技术,子课题负责人,2018.05-2021.04.

[8] 国家自然科学基金面上项目,CO2与粘土相互作用的机理及其对盖层密封性的影响研究,项目负责人,2015.1-2018.12.

[9] “十二五”国家科技支撑计划项目,燃煤电厂CO2捕集、驱替煤层气利用与封存技术研究与试验示范,课题负责人,2015.1-2017.12.

[10 壳牌石油,CO2与粘土微观作用研究,项目负责人,2012.4-2015.4.

[11] 国家自然科学基金青年基金项目,地层约束条件下N2/CO2混合气体驱替煤层气的机理及最佳气体组合比研究,项目负责人,2012.1-2014.12.

[12] “十二五”中国地质调查局公益性项目,全国煤田二氧化碳地质储存潜力与适宜性评价,项目负责人,2011.7-2011.12.


代表论著Representative Treatises

[1] Zhiming Fang*, Chenlong Yang, Shaicheng Shen. Experimental investigation of CO2-enhanced coalbed methane recovery using large intact coal cores. Journal of CO2 Utilization, Volume 100, October 2025, 103185.

[2] Zhiming Fang*, Chenlong Yang, Rundong Wang. Monitoring technologies for CO₂ storage in coal seams and enhanced coalbed methane recovery: A review of field applications. Fuel Processing Technology, Volume 276, 2025, 108274.

[3] Zhiming Fang*, Chenlong Yang, Shaicheng Shen. Influence of Stress on Gas Sorption Behavior and Induced Swelling in Coal: Implications for Sustainable CO2 Geological Storage. Sustainability 2025, 17(20), 8990.

[4] Zhiming Fang*, Shaicheng Shen. Optimizing enhanced coalbed methane recovery in thick lignite formations: An integrated technical and economic evaluation. Results in Engineering, Volume 27, September 2025, 106733.

[5] Shaicheng Shen, Zhiming Fang*, Xiaochun Li, Quan Jiang, Haimeng Shen, and Lu Shi. Enhanced Coalbed Methane Recovery from Lignite Using CO2 and N2. Energy & Fuels 2025 39 (22), 10394-10409.

[6] Chenlong Yang, Zhiming Fang*, Shaicheng Shen, Haibin Wang. Enhancing Recovery of Low-Productivity Coalbed Methane Wells in Medium-Shallow Reservoirs by CO2 Huff-and-Puff. Separations 2025, 12(11), 314.

[7] 方志明*, 王润东, 杨晨龙. 深部煤层气开发的机遇与挑战. 中国矿业大学学报, 2025, 54(1), 34-51.

[8] Shaicheng Shen, Zhiming Fang*, Xiaochun Li, Quan Xue, Huilin Ci. Experiment on the gas permeability and gas-water relative permeability in high-rank coal with a self-developed device. Energy & Fuels, 2023, 37(3), 12.

[9] Shaicheng Shen, Zhiming Fang*, Xiaochun Li. A novel method for determining water saturation of porous media in relative permeability measurement using DPT. Measurement Science and Technology, 2023,34(3), 035901.

[10] Shaicheng Shen, Zhiming Fang*, Xiaochun Li. Laboratory Measurements of the Relative Permeability of Coal: A Review. Energies, 2020, 13.

[11] Shaicheng Shen, Xiaochun Li, Zhiming Fang*, Nao Shen. Effect of Gas Adsorption on the Application of the Pulse-Decay Technique. Geofluids, 2020.

[12] Shoujian Peng, Zhiming Fang, Jian Shen, et al. Effects of gas sorption-induced swelling/shrinkage on the cleat compressibility of coal under different bedding directions. Sci Rep 7, 14337 (2017).

[13] Zhiming Fang, Xiaochun Li. A preliminary evaluation of carbon dioxide storage capacity in unmineable coalbeds in China. Acta Geotech. 9, 109–114 (2014).

[14] Xiaochun Li, Zhiming Fang. Current status and technical challenges of CO2storage in coal seams and enhanced coalbed methane recovery: an overview. International Journal of Coal Science & Technology, 2014,1(1):93102.

[15] Zhiming Fang, Xiaochun Li, Lin Huang. Laboratory measurement and modelling of coal permeability with different gases adsorption. International Journal of Oil Gas & Coal Technology, 2013, 6(5):567-580.

[16] Zhiming Fang, Xiaochun Li, Geoff Guoxiong, Wang. A gas mixture enhanced coalbed methane recovery technology applied to underground coal mines. Journal of Mining Science, 2013, 49(1):106-117.

[17] Zhiming Fang, Xiaochun Li. Experimental Study of Gas Adsorption-induced Coal Swelling and its Influence on Permeability. Disaster Advances, 2012, 5(4):769-773.

[18] Zhiming Fang, Xiaochun Li. Preliminary assessment of CO2 geological storage potential in Chongqing, China. Procedia Environmental Sciences, 2011, 11(part-PC): 1064-1071.

[19] Zhiming Fang, Xiaochun Li, Haixiang Hu.Gas mixture enhance coalbed methane recovery technology: Pilot tests. Energy Procedia, 2011, 4(1):2144-2149.

[20] 方志明, 李小春, 李洪等. 混合气体驱替煤层气技术的可行性研究. 岩土力学, 2010, 31(10):3223-3229.

[21] 李小春, 方志明. 中国CO2地质埋存关联技术的现状.岩土力学, 2007, (10):2229-2233+2239.

[22] 方志明,李小春,白冰.煤岩吸附量-变形-渗透系数同时测量方法研究[J].岩石力学与工程学报,2009,28(09):1828-1833.


获奖及荣誉Awards and Honors

湖北省科技进步一等奖2017

中国煤炭工业科学技术奖一等奖(2018)。