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研究队伍

李波

作者:发布日期:2018-01-24点击量:

  

李波

           

职称职务

教授


 

 

 

email

libo86@cqu.edu.cn

联系地址

重庆市沙坪坝区沙正街174

重庆大学a区资源与安全学院

研究方向

天然气水合物安全高效开采技术,水合物法分离提纯技术及应用,水合物相变动力学分子模拟

个人简历

2016/09-至今,重庆大学,资源及环境科学学院,安全工程系,副教授

2017/09-2018/09,科罗拉多矿业大学,化学与生物工程系,访问学者

2014/08-2016/08,重庆大学,资源及环境科学学院,安全工程系,讲师

2009/09-2014/07,中国科学院大学(广州能源研究所),热能工程,工学博士

2005/09-2009/07,中国科学技术大学,热科学和能源工程系,热能与动力工程专业,工学学士

学术兼职

代表性研究项目

[1] 国家自然科学基金青年基金项目:含裂隙多孔介质中天然气水合物分解动力学机理研究(no.51506016),2016.01-2018.12,主持,在研

[2] 重庆市前沿与应用基础研究项目:冰点以下天然气水合物降压分解过程影响因素研究(no.cstc2016jcyja0034),2016.07-2019.06,主持,在研

[3] 国家杰出青年科学基金项目:天然气水合物物性和分解机理的研究(no.51225603),2013.01-2016.12,主要参与者,已结题

[4] 国家自然科学基金面上项目:沉积物中天然气水合物分解过程的多相流动及传热传质机制的研究(no.51076155),2011.01-2013.12,主要参与者,已结题

[5] 国家自然科学基金面上项目:沉积物中天然气水合物三维分解动力学研究(no.51004089),2011.01-2013.12,主要参与者,已结题

代表性获奖

[1] 李波(12/15),天然气水合物开采三维综合模拟技术系统,广东省人民政府,广东省科学技术奖,一等奖,2014

[2] 李波,中国科学院院长奖,特别奖,2014

代表性专利

[1] 李小森, 李波, 李刚. 一种测量含水合物多孔沉积物渗透率的装置. 发明专利, 授权号:zl201310430717.5

[2] 李小森, 李波, 李刚, 黄宁生. 一种沉积物中均匀高饱和度天然气水合物制备方法和装置. 发明专利, 授权号:zl201310487685.2

代表性专著

代表性论文*通讯作者)

[1] li bo, liu sheng-dong, liang yun-pei*,   liu hang. the use of electrical heating for the enhancement of gas recovery   from methane hydrate in porous media. applied energy 2017, doi:   10.1016/j.apenergy.2017.08.066.

[2] li bo, liu sheng-dong, liang   yun-pei*. experimental study of methane hydrate dissociation by depressurization   and electrical heating. energy procedia 2017, 105: 5018-5025.

[3] li bo*, liang yun-pei, li   xiao-sen, zhou lei. a pilot-scale study of gas production from hydrate deposits   with two-spot horizontal well system. applied energy 2016,   176:12-21.

[4] li bo, liang yun-pei*, li   xiao-sen, wu hui-jie. numerical analysis of methane hydrate decomposition   experiments by depressurization around freezing point in porous media. fuel   2015, 159:925-934.

[5] liang yun-pei, li xiao-sen, li bo*.   assessment of gas production potential from hydrate reservoir in qilian mountain permafrost using five-spot horizontal well system. energies   2015, 8(10): 10796-10817.

[6] li bo, li xiao-sen*, li gang,   chen zhao-yang. evaluation of gas production from qilian mountain permafrost   hydrate deposits in two-spot horizontal well system. cold regions science   and technology 2015, 109:87-98.

[7] li bo, li xiao-sen*, li gang, feng jing-chun, wang   yi. depressurization induced gas production from hydrate deposits with low gas   saturation in a pilot-scale hydrate simulator. applied energy 2014,   129: 274-286.

[8] li bo, li xiao-sen*, li gang. kinetic studies of methane   hydrate formation in porous media based on experiments in a pilot-scale hydrate simulator and a new model.   chemical engineering science 2014, 105:220-230.

[9] li bo, li xiao-sen*, li gang, wang yi, feng   jing-chun. kinetic behaviors of methane hydrate formation in porous media in different hydrate deposits. industrial & engineering chemistry research 2014, 53(13): 5464-5474.

[10] li bo, li gang, li xiao-sen*, chen zhao-yang, zhang   yu. the use of heat-assisted antigravity drainage method in the two horizontal wells in gas production   from the qilian mountain permafrost hydrate deposits. journal of petroleum   science and engineering 2014, 120:141-153.

[11] li bo, li xiao-sen*, li gang,   jia jia-lin, feng jing-chun. measurements of water permeability in unconsolidated   porous media with methane hydrate formation. energies 2013,   6(7):3622-3636.

[12] li xiao-sen*, li bo, li gang,   yang bo. numerical simulation of gas production potential from permafrost hydrate   deposits by huff and puff method in a single horizontal well in qilian   mountain, qinghai province. energy 2012, 40(1):59-75.

[13] li bo, li gang, li xiao-sen*,   li qing-ping, yang bo, zhang yu, chen zhao-yang. gas production from methane hydrate   in pilot-scale hydrate simulator using huff and puff method by experimental   and numerical studies. energy & fuels 2012, 26(12):7183-7194.

[14] li gang, li bo, li xiao-sen*, zhang   yu, wang yi. experimental and numerical studies on gas production from methane   hydrate in porous media by depressurization in pilot-scale hydrate simulator.   energy & fuels 2012, 26(10):6300-6310.

[15] li gang, li xiao-sen*, li bo, wang yi. methane hydrate dissociation   using inverted five-spot water flooding method in cubic hydrate simulator. energy 2013,   64:298-306.

 

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