王熠 讲师-pg电子游戏官网入口

王熠 讲师-pg电子游戏官网入口

王熠 讲师

发布时间:2021-02-23 10:44:33       来源:       作者:       点击:


王熠,男,汉族,1988年2月生。2010年于中国石油大学(北京)获得石油工程专业学士学位,2012年于美国宾夕法尼亚州立大学石油与天然气工程专业获得硕士学位,2017年于美国宾夕法尼亚州立大学获得能源与矿物工程学院博士学位,现任中国矿业大学(北京)能源与矿业学院讲师,兼任国际岩石力学学会(isrm)sorptive rocks专委会秘书长,美国石油地质家协会(aapg)、美国石油工程师协会(spe)会员。

主持北京市自然科学基金青年项目、国家重点实验室开放基金和校企联合横向课题等项目,参与“十四五”国家重点研发计划深海和极地关键技术与装备重点专项、美国国家自然科学基金(nsf)项目、国家自然科学基金重点国际(地区)合作研究项目、美国range resource公司项目等。担任国际知名期刊(《international journal of coal geology》、《fuel》等)审稿人。主要研究方向为非常规储层结构与微观渗流力学、能源协调开采中的多场耦合、二氧化碳封存等。 在《international journal of coal geology》、《fuel》、《energy & fuels》等国外学术刊物上发表sci论文17篇。

yi wang, bornin feb. 1988,received his ba at china university of petroleum (beijing) in 2010, ma and phd at the pennsylvania state university in 2012 and 2017. he now serves as a lecturer at china university of mining and technology (beijing), starting from 2018. he is also the secretary general of international society for rock mechanics and rock engineering (isrm) commission on sorptive rocks, and a member of american association of petroleum geologists (aapg) and society of petroleum engineers (spe).

wanghas led projects from beijing municipal natural science foundation,state key laboratory of water resource protection andutilization in coal mining,andother enterprises, while participated in several projects including “deep-sea andarctickey technology and equipment” special project of nationalkey research and development program of china, national science foundation project (in the us), the major international (regional) joint research program of china.wangalso acts as a reviewer for top journals, such asinternational journal of coal geology,fuel, etc. his research interests mainly includeunconventional reservoir structure and microscopicflowmechanics, multi-field coupling in resources co-recovery, and carbon sequestration.wanghas authored 17 scipublications, including selected works as follows:


(1) y. wang, s. liu, y. zhao. modeling of permeability for ultra-tight coal and shale matrix: a multi-mechanistic flow approach.fuel, 2018, 232, 60-70. (https://doi.org/10.1016/j.fuel.2018.05. 128)

(2) y. wang, s. liu. estimation of pressure-dependent diffusive permeability of coal using methane diffusion coefficient: laboratory measurements and modeling.energy &fuels, 2016, 30 (11). (https://doi.org/10.1021/acs.energyfuels.6b01480)

(3) y. wang, s. liu, d. elsworth. laboratory investigations of gas flow behaviors in tight anthracite and evaluation of different pulse-decay methods on permeability estimation.international journal of coal geology, 2015, 149, 118-128. (https://doi.org/10.1016/j.coal.2015. 07.009)

(4) y. wang,h. wang, s. qi, s. liu, y. zhao, w. yue. investigation of shale permeability evolution consideringbivalued effective stress coefficients for co2injection.geofluids, 2021, 2021.

(5) y. wang, s. liu, w. yue, y. zhao. discussion on the effective stress coefficient in unconventional fracture-matrix gas transport.53th us rock mechanics/geomechanics symposium held in new york city, june 23–26, 2019.

(6)s. liu,y. wang, s. harpalani. anisotropy characteristics of coal shrinkage/swelling and its impact on coal permeability evolution with co2injection.greenhouse gases: science and technology, 2016, 6(5):615-632. (https://doi.org/10.1002/ghg)

(7) y. wang, r. watson, j. rostami, j. y. wang, m. limbruner, z. he. study of borehole stability of marcellus shale wells in longwall mining areas.journal of petroleum exploration and production technology, 2013, 4(1): 59-71. (https://doi.org/10.1007/s13202-013-0083-9)

(8) y. wang, s. liu. shale core apparent permeability characterization with co2injection under stress-controlled condition.14th annual carbon capture, utilization & storage conference, pittsburgh, pennsylvania, sep. 30-oct. 03, 2015.


contact:

dr. yi wang, lecturer

school of energy and mining engineering

china university of mining and technology, beijing

xueyuan road d11, beijing 100083, pr china

tel: 8613321167865

email: yiwang.evan@cumtb.edu.cn

orcid: https://orcid.org/0000-0002-6213-1685

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