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刘瑜
2023-05-09 16:35
  • 刘瑜
  • 刘瑜 - 博士 教授 博导-大连理工大学-能源与动力学院-个人资料

近期热点

资料介绍

个人简历


个人简介
Personal Profile
刘瑜,2003年起在大连理工大学任教,主要从事二氧化碳地质封存多相流动与传质、天然气水合物开采基础、岩心检测与分析和力学特性等方向的研究。2014-2015年曾在日本地球环境产业技术研究所从事访问学者工作。近5年来,作为负责人承担国家重点研发计划子课题2项,“973”子课题1项、国家自然科学基金项目2项,辽宁省自然基金项目1项。作为骨干成员参加科技部重大专项、国家自然科学基金重点项目、国家“973”、“863”项目课题等8项。已发表SCI检索论文97篇,其中第一作者11篇,通讯作者23篇。获得授权(第一发明人)国家发明专利8项。获得海洋工程技术奖特等奖1项(7/20,2013年)一等奖1项(7/13,2018年),教育部自然科学奖一等奖1项(7/13,2018年)。
教育经历
大连理工大学 能源与环境工程 博士
2000.9 2003.9 大连理工大学 动力机械及工程 硕士
1996.9 2000.7 大连理工大学 内燃机 学士
工作经历
2011.12 至今 能源与动力学院 副教授
2006.5 2011.12 能源与动力学院 讲师
2003.11 2006.5 动力系 助教
专利
一种应用CT测量多孔介质内CO2在盐水中的溶解速率的方法
一种应用CT测量多孔介质内气液间舍伍德数的装置及方法
一种倾斜井海洋天然气水合物开采方法
一种核磁共振成像用填砂式夹持器
利用太阳能加热开采天然气水合物的方法和装置
并联式反应釜及基于反应釜的水合物诱导时间测试装置
著作成果
小水力发电技术
太阳能利用新技术
科研项目
水合物原位监测综合评价技术研究, 国家科技部 , 2017/07/01, 进行
水合物开采过程气-液-固多相流动规律与泥砂控制机理, 国家科技部 , 2017/06/02, 进行
地下水石油烃污染物重力分异迁移特性研究, 省、市、自治区科技项目, 2016/07/19, 进行
多孔介质内孔隙尺度CO2-水两相流动特性与捕获机理研究, 国家自然科学基金项目, 2015/08/18, 进行
沉积物中水合物分解过程的多相渗流规律的数值模拟, 企事业单位委托科技项目, 2011/11/01-2013/11/30, 完成
天然气水合物开采中的多相流动机理和相关基础理论研究, 国家“973”项目 , 2008/08/21-2010/08/31, 完成
科研奖励
科技进步奖
海洋工程科技奖
科学技术进步奖
大连市2011年度科技进步二等奖
中国海洋工程咨询协会科学技术奖
海洋工程科学技术奖
其他奖励
2015-2016年校优秀班主任 (2016年)
2011年校教学质量优良奖 (2012年)
大连理工大学创先争优优秀共产党员 (2012年)
2010年校教学质量优良奖 (2011年)
2009年校教学质量优良奖 (2010年)
校2008年暑期社会实践优秀带队教师 (2008年)

研究领域


管道流动安全
天然气水合物
多相流动
二氧化碳地质封存"主要研究领域:
1)天然气水合物基础物性
2)天然气水合物开采多相渗流理论
3)天然气管道输运流动安全保障技术
4)二氧化碳地质封存技术
5)二氧化碳驱油强化开采技术"

近期论文


[1]Chu, Jiawei,Yang, Lei,Liu, Yu,Song, Yongchen,Yu, Tianho,Lv, Xin,Li, Qingping,Zhao, Jiafei.Pressure pulse wave attenuation model coupling waveform distortion and viscous dissipation for blockage detection in pipeline[J],ENERGY SCIENCE & ENGINEERING,2020,8(1):260-265
[2]Song, Yongchen,Luo, Tingting,Madhusudhan, B. N.,Sun, Xiang,Liu, Yu,Kong, Xianjing,Li, Yanghui.Strength behaviors of CH4 hydrate-bearing silty sediments during thermal decomposition[J],JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING,2019,72
[3]Mutailipu, Meiheriayi,Jiang, Lanlan,Liu, Xiaojie,Liu, Yu,Zhao, Jiafei.CO2 and alkane minimum miscible pressure estimation by the extrapolation of interfacial tension[J],FLUID PHASE EQUILIBRIA,2019,494:103-114
[4]Li, Xingbo,Song, Yongchen,Zhao, Jiafei,Liu, Yu,Zhang, Hanquan,Xiao, Bo,Lv, Xin,Yao, Haiyuan,Pang, Weixin,Li, Qingping,Yang, Lei.Non-Embedded Ultrasonic Detection for Pressure Cores of Natural Methane Hydrate-Bearing Sediments[J],ENERGIES,2019,12(10)
[5]Fu, Jin,Liu, Yu,Zhao, Jiafei,Song, Yongchen,Liu, Zheyuan.A theoretical model for hydrate removal in gas-dominated pipelines[A],2019,158:5349-5354
[6]Liu, Zheyuan,Yang, Mingjun,Liu, Yu,Song, Yongchen,Li, Qingping.Analyzing the Joule-Thomson effect on wellbore in methane hydrate depressurization with different back pressure[A],2019,158:5390-5395
[7]Jiang, Lanlan,Wang, Sijia,Abudula, Abuliti,Liu, Yu,Song, Yongchen.The effect of density difference on the development of density-driven convection under large Rayleigh number[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2019,139:1087-1095
[8]Li, Xingbo,Liu, Yu,Jiang, Lanlan,Song, Yongchen.Diffusion Properties for CO2-Brine System under Sequestration Related Pressures with Consideration of the Swelling Effect and Interfacial Area[J],INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,2018,57(45):15556-15564
[9]Wang, Bin,Fan, Zhen,Wang, Pengfei,Liu, Yu,Zhao, Jiafei,Song, Yongchen.Analysis of depressurization mode on gas recovery from methane hydrate deposits and the concomitant ice generation[J],APPLIED ENERGY,2018,227(,SI):624-633
[10]Wang, Bin,Dong, Hongsheng,Liu, Yanzhen,Lv, Xin,Liu, Yu,Zhao, Jiafei,Song, Yongchen.Evaluation of thermal stimulation on gas production from depressurized methane hydrate deposits[J],APPLIED ENERGY,2018,227(,SI):710-718
[11]Jiang, Lanlan,Yu, Minghao,Teng, Ying,Yang, Mingjun,Liu, Yu,Li, Weizhong,Song, Yongchen.Displacement and Dissolution Characteristics of CO/Brine System in Unconsolidated Porous Media[J],TRANSPORT IN POROUS MEDIA,2018,122(3):595-609
[12]Liu, Shuyang,Song, Yongchen,Zhao, Changzhong,Zhang, Yi,Lv, Pengfei,Jiang, Lanlan,Liu, Yu,Zhao, Yuechao.The horizontal dispersion properties of CO2-CH4 in sand packs with CO2 displacing the simulated natural gas[J],JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING,2018,50:293-300
[13]蒋兰兰,王思佳,李星泊,刘婧,刘瑜,薛自求.The role of flow rate on flow patterns and saturation in high permeability porous media[J],International jounal of greenhouse gas control,2018,78:364-374
[14]Zhang, Yi,Chi, Yuan,Zhao, Changzhong,Liu, Yu,Zhao, Yuechao,Jiang, Lanlan,Song, Yongchen.CO2 Adsorption Behavior of Graphite Oxide Modified with Tetraethylenepentamine[J],JOURNAL OF CHEMICAL AND ENGINEERING DATA,2018,63(1):202-207
[15]Jiang, Lanlan,Wu, Bohao,Song, Yongchen,Yang, Mingjun,Wang, Dayong,Liu, Yu,Xue, Ziqiu.Mass transfer coefficient measurement during brine flush in a CO2-filled packed bed by X-ray CT scanning[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2017,115:615-624
[16]Lv, Pengfei,Song, Yongchen,Liu, Yu,Wang, Bin,Jiang, Lanlan,Wu, Bohao,Liu, Shuyang,Chen, Junlin.Pore-Scale Imaging and Analysis of Phase Topologies and Displacement Mechanisms for CO2-Brine Two-Phase Flow in Unconsolidated Sand Packs[J],WATER RESOURCES RESEARCH,2017,53(11):9127-9144
[17]Zhang, Lunxiang,Kuang, Yangmin,Zhang, Xiaotong,Song, Yongchen,Liu, Yu,Zhao, Jiafei.Analyzing the Process of Gas Production from Methane Hydrate via Nitrogen Injection[J],INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,2017,56(26):7585-7592
[18]Teng, Ying,Jiang, Lanlan,Fan, Yingting,Liu, Yu,Wang, Dayong,Abudula, Abuliti,Song, Yongchen.Quantifying the dynamic density driven convection in high permeability packed beds[J],MAGNETIC RESONANCE IMAGING,2017,39:168-174
[19]Lv, Pengfei,Liu, Yu,Wang, Zhe,Liu, Shuyang,Jiang, Lanlan,Chen, Junlin,Song, Yongchen.In Situ Local Contact Angle Measurement in a CO2-Brine-Sand System Using Microfocused X-ray CT[J],LANGMUIR,2017,33(14):3358-3366
[20]Jiang, Lanlan,Yu, Minghao,Liu, Yu,Yang, Mingjun,Zhang, Yi,Xue, Ziqiu,Suekane, Tetsuya,Song, Yongchen.Behavior of CO2/water flow in porous media for CO2 geological storage[J],MAGNETIC RESONANCE IMAGING,2017,37:100-106
[21]Liu, Yu,Teng, Ying,Jiang, Lanlan,Zhao, Jiafei,Zhang, Yi,Wang, Dayong,Song, Yongchen.Displacement front behavior of near miscible CO2 flooding in decane saturated synthetic sandstone cores revealed by magnetic resonance imaging[J],MAGNETIC RESONANCE IMAGING,2017,37:171-178
[22]Liu, Shuyang,Zhang, Yi,Chi, Yuan,Song, Yongchen,Yang, Mingjun,Liu, Yu,Lv, Pengfei.Density characteristics of CO2-CH4 binary mixtures at temperatures from (300 to 308.15) K and pressures from (2 to 18) MPa[J],JOURNAL OF CHEMICAL THERMODYNAMICS,2017,106:1-9
[23]Liu, Yu,Tang, Jingda,Wang, Mengting,Wang, Qianyi,Tong, Jianing,Zhao, Jiafei,Song, Yongchen.Measurement of Interfacial Tension of CO2 and NaCl Aqueous Solution over Wide Temperature, Pressure, and Salinity Ranges[J],JOURNAL OF CHEMICAL AND ENGINEERING DATA,2017,62(3):1036-1046
[24]Zhang, Lunxiang,Yang, Lei,Wang, Jiaqi,Zhao, Jiafei,Dong, Hongsheng,Yang, Mingjun,Liu, Yu,Song, Yongchen.Enhanced CH4 recovery and CO2 storage via thermal stimulation in the CH4/CO2 replacement of methane hydrate[J],CHEMICAL ENGINEERING JOURNAL,2017,308:40-49
[25]刘瑜,李洋辉,刘卫国,宋永臣.Experimental study on the creep properties of CO2 hydrate-bearing sediments[A],2017
[26]刘瑜,王大勇.An experimental study on the influence of CO2 containing N2 on CO2 sequestration by X-ray CT scanning.[A],2017,114(-):4119-4128
[27]刘瑜,王大勇,宋永臣.Pore-scale mass transfer experiments in porous media by X-ray CT scanning.[J],Energy Procedia.,2017,105(-):5079-5084
[28]Jiang, Lanlan,Liu, Yu,Teng, Ying,Zhao, Jiafei,Zhang, Yi,Yang, Mingjun,Song, Yongchen.Permeability estimation of porous media by using an improved capillary bundle model based on micro-CT derived pore geometries[J],HEAT AND MASS TRANSFER,2017,53(1):49-58
[29]Meiheriayi, Mutailipu,Liu, Yu,Wu, Bohao,Song, Yongchen,Wang, Dayong,Ai, Li.Gas-Water Two Phase Flow Simulation Based on Pore Network Model for Reservoir Rocks[A],PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE ON APPLIED ENERGY,2017,142:3214-3219
[30]Zheng, Jia-nan,Yang, Ming-jun,Liu, Yu,Wang, Da-yong,Song, Yong-chen.Effects of cyclopentane on CO2 hydrate formation and dissociation as a co-guest molecule for desalination[J],JOURNAL OF CHEMICAL THERMODYNAMICS,2017,104:9-15
[31]刘卫国,李洋辉,刘瑜.Experimental study on the permeability of gas hydrates-bearing Glass Sands[A],2017
[32]Luo, Tingting,Song, Yongchen,Zhu, Yiming,Liu, Weiguo,Liu, Yu,Li, Yanghui,Wu, Zhaoran.Triaxial experiments on the mechanical properties of hydrate-bearing marine sediments of South China Sea[J],MARINE AND PETROLEUM GEOLOGY,2016,77:507-514
[33]Zhao, Yuechao,Wang, Tonglei,Song, Yongchen,Liu, Yu,Dong, Bo,Zhu, Ningjun.Visualization of asphaltene deposition effects on porosity and permeability during CO2 flooding in porous media[J],JOURNAL OF VISUALIZATION,2016,19(4):603-614
[34]Teng, Ying,Liu, Yu,Jiang, Lanlan,Song, Yongchen,Zhao, Jiafei,Zhang, Yi,Wang, Dayong.A visualization study on two-phase gravity drainage in porous media by using magnetic resonance imaging[J],MAGNETIC RESONANCE IMAGING,2016,34(7):855-863
[35]Lv, Pengfei,Liu, Yu,Jiang, Lanlan,Song, Yongchen,Huang, Qingxun.Pore-scale contact angle measurements of CO2-brine-glass beads system using micro-focused X-ray computed tomography[J],MICRO & NANO LETTERS,2016,11(9):524-527
[36]Zhang, Yi,Wang, Lulu,Liu, Shuyang,Song, Yongchen,Liu, Yu,Jiang, Lanlan.Density and Volumetric Behavior of CO2 + Undecane System from 313.15 to 353.15 K and Pressures up to 19 MPa[J],JOURNAL OF CHEMICAL AND ENGINEERING DATA,2016,61(9):3003-3012
[37]Jiang, Lanlan,Zhou, Xinhuan,Liu, Yu,Song, Yongchen,Zhao, Yuechao,Wu, Bohao,Teng, Ying.Noninvasive temperature and velocity mapping using magnetic resonance imaging[J],JOURNAL OF VISUALIZATION,2016,19(3):403-415
[38]赵越超,沈子鉴,陈俊霖,汤凌越,刘瑜,宋永臣.Micro-CT技术在多孔介质两相流动实验研究中的应用[J],实验室科学,2016,19(3):7-12,15
[39]Liu, Yu,Teng, Ying,Lu, Guohuan,Jiang, Lanlan,Zhao, Jiafei,Zhang, Yi,Song, Yongchen.Experimental study on CO2 diffusion in bulk n-decane and n-decane saturated porous media using micro-CT[J],FLUID PHASE EQUILIBRIA,2016,417:212-219
[40]Lv, Pengfei,Liu, Yu,Jiang, Lanlan,Song, Yongchen,Wu, Bohao,Zhao, Jiafei,Zhang, Yi.Experimental determination of wettability and heterogeneity effect on CO2 distribution in porous media[J],GREENHOUSE GASES-SCIENCE AND TECHNOLOGY,2016,6(3):401-415
[41]Zhao, Yuechao,Chen, Junlin,Yang, Mingjun,Liu, Yu,Song, Yongchen.A rapid method for the measurement and estimation of CO2 diffusivity in liquid hydrocarbon-saturated porous media using MRI[J],MAGNETIC RESONANCE IMAGING,2016,34(4):437-441
[42]Liu, Weiguo,Luo, Tingting,Li, Yanghui,Song, Yongchen,Zhu, Yiming,Liu, Yu,Zhao, Jiafei,Wu, Zhaoran,Xu, Xiaohu.Experimental study on the mechanical properties of sediments containing CH4 and CO2 hydrate mixtures[J],JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING,2016,32:20-27
[43]Zhang, Lunxiang,Zhao, Jiafei,Dong, Hongsheng,Zhao, Yuechao,Liu, Yu,Zhang, Yi,Song, Yongchen.Magnetic resonance imaging for in-situ observation of the effect of depressurizing range and rate on methane hydrate dissociation[J],CHEMICAL ENGINEERING SCIENCE,2016,144:135-143
[44]蒋兰兰,刘瑜,赵佳飞,张毅,杨明军,宋永臣.Permeability estimation of porous media by using an improved capillary bundle model based on micro-CT derived pore geometries[J],Heat Mass Transfer,2016,53(53):49-59
[45]刘瑜,蒋兰兰,宋永臣,赵越超,张毅,王大勇.Estimation of minimum miscibility pressure (MMP) of CO2 and liquid[J],Magnetic Resonance Imaging,2016,34:97-104
[46]滕莹,刘瑜,蒋兰兰,陆国欢,王大勇,宋永臣.CO2 capillary trapping behaviour in glass sand packed heterogeneous porous media[J],RSC ADVANCES,2016,6(103):101452-101461
[47]Zhao, Jiafei,Zhang, Lunxiang,Chen, Xiaoqin,Zhang, Yi,Liu, Yu,Song, Yongchen.Combined replacement and depressurization methane hydrate recovery method[J],ENERGY EXPLORATION & EXPLOITATION,2016,34(1):129-139
[48]Song, Yongchen,Wang, Jiaqi,Liu, Yu,Zhao, Jiafei.Analysis of heat transfer influences on gas production from methane hydrates using a combined method[J],INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2016,92:766-773
[49]Wu, Bohao,Jiang, Lanlan,Liu, Yu,Yang, Mingjun,Wang, Dayong,Lv, Pengfei,Song, Yongchen.Experimental study of two-phase flow properties of CO2 containing N-2 in porous media[J],RSC ADVANCES,2016,6(64):59360-59369
[50]Liu, Yu,Lv, Pengfei,Liu, Yao,Jiang, Lanlan,Tetsuya, Suekane,Song, Yongchen,Wu, Bohao,Liu, Shuyang.CO2/water two-phase flow in a two-dimensional micromodel of heterogeneous pores and throats[J],RSC ADVANCES,2016,6(77):73897-73905
[51]Teng, Ying,Liu, Yu,Jiang, Lanlan,Lu, Guohuan,Wang, Dayong,Song, Yongchen.CO2 capillary trapping behaviour in glass sand packed heterogeneous porous media during drainage and imbibition revealed by magnetic resonance imaging[J],RSC ADVANCES,2016,6(103):101452-101461
[52]蒋兰兰,刘瑜,杨明军,王大勇,宋永臣.Experimental study of two-phase flow properties of CO2 containing N2 in porous media[J],RSC adv,2016,6(6):59360-59369
[53]宋永臣,刘瑜,赵佳飞.Analysis of heat transfer influences on gas production from methane hydrate using a combined method[J],International Journal of Heat and Mass Transfer,2016,92(1):766-773
[54]Yang, Mingjun,Zheng, Jianan,Liu, Weiguo,Liu, Yu,Song, Yongchen.Effects of C3H8 on hydrate formation and dissociation for integrated CO2 capture and desalination technology[J],ENERGY,2015,93:1971-1979
[55]霍鹏,王超杰,朱一铭,刘方兰,肖波,刘卫国,凌铮,刘瑜,赵佳飞.天然气水合物岩芯基础物性分析[A],2015年“海洋地质、矿山资源与环境”学术研讨会,2015,329-337
[56]Liu, Yu,Xue, Ziqiu,Park, Hyuck,Kiyama, Tamotsu,Zhang, Yi,Nishizawa, Osamu,Chae, Kwang-seok.Measurement of electrical impedance of a Berea sandstone core during the displacement of saturated brine by oil and CO2 injections[J],JOURNAL OF APPLIED GEOPHYSICS,2015,123:50-62
[57]Zhao, Jiafei,Zhang, Lunxiang,Chen, Xiaoqing,Fu, Zhe,Liu, Yu,Song, Yongchen.Experimental Study of Conditions for Methane Hydrate Productivity by the CO2 Swap Method[J],ENERGY & FUELS,2015,29(11):6887-6895
[58]Liu, Yu,Mutailipu, Meiheriayi,Jiang, Lanlan,Zhao, Jiafei,Song, Yongchen,Chen, Lingyu.Interfacial tension and contact angle measurements for the evaluation of CO2-brine two-phase flow characteristics in porous media[J],ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY,2015,34(6):1756-1762
[59]Zhao, Jiafei,Yang, Lei,Liu, Yu,Song, Yongchen.Microstructural characteristics of natural gas hydrates hosted in various sand sediments[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2015,17(35):22632-22641
[60]赵越超,朱宁军,宋永臣,陈俊霖,刘瑜.利用MRI确定油气最小混相压的实验系统与方法[J],实验室研究与探索,2015,34(9):16-20
[61]Zhao, Jiafei,Wang, Chaojie,Yang, Mingjun,Liu, Weiguo,Xu, Kun,Liu, Yu,Song, Yongchen.Existence of a memory effect between hydrates with different structures (I, II, and H)[J],JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING,2015,26:330-335
[62]Liu, Yu,Jiang, Lanlan,Zhu, Ningjun,Zhao, Yuechao,Zhang, Yi,Wang, Dayong,Yang, Mingjun,Zhao, Jiafei,Song, Yongchen.MRI investigation of water-oil two phase flow in straight capillary, bifurcate channel and monolayered glass bead pack[J],MAGNETIC RESONANCE IMAGING,2015,33(7):918-926
[63]Liu, Yu,Jiang, Lanlan,Tang, Lingyue,Song, Yongchen,Zhao, Jiafei,Zhang, Yi,Wang, Dayong,Yang, Mingjun.Minimum miscibility pressure estimation for a CO2/n-decane system in porous media by X-ray CT[J],EXPERIMENTS IN FLUIDS,2015,56(7)
[64]Jiang, Lanlan,Abudula, Abuliti,Zhou, Xinhuan,Song, Yongchen,Liu, Yu,Yu, Minghao,Yang, Mingjun,Xue, Ziqiu,Zhao, Yuechao,Wu, Bohao.Experiment Study on Temperature Distribution in Water-Saturated Porous Media[J],APPLIED MAGNETIC RESONANCE,2015,46(7):793-808
[65]赵越超,宋永臣,陈俊霖,杨明军,刘瑜,蒋兰兰.多孔介质内多相多组分渗流磁共振成像检测实验系统研制[J],实验技术与管理,2015,32(6):84-89
[66]Jiang, Lanlan,Shen, Zijian,Liu, Yu,Song, Yongchen,Yang, Mingjun,Xue, Ziqiu,Zhao, Yuechao,Zhao, Jiafei,Zhang, Yi,Suekane, Tetsuya.Application of X-ray CT investigation of CO2-brine flow in porous media[J],EXPERIMENTS IN FLUIDS,2015,56(5)
[67]Zhang, Yi,Jian, Weiwei,Song, Yongchen,Liu, Weiguo,Yang, Mingjun,Zhao, Jiafei,Liu, Yu,Zhao, Yuechao.(p, rho, T) Behavior of CO2 + Tetradecane Systems: Experiments and Thermodynamic Modeling[J],JOURNAL OF CHEMICAL AND ENGINEERING DATA,2015,60(5):1476-1486
[68]Yang, Mingjun,Song, Yongchen,Jiang, Lanlan,Liu, Yu,Wang, Xiaojing.Behaviour of hydrate-based technology for H-2/CO2 separation in glass beads[J],SEPARATION AND PURIFICATION TECHNOLOGY,2015,141:170-178
[69]Wang, Dayong,Dong, Bo,Breen, Stephen,Zhao, Minglong,Qiao, Juan,Liu, Yu,Zhang, Yi,Song, Yongchen.Review: Approaches to research on CO2/brine two-phase migration in saline aquifers[J],HYDROGEOLOGY JOURNAL,2015,23(1):1-18
[70]杨明军,刘卫国,刘瑜,宋永臣.Effects of C3H8 on hydrate formation and dissociation for integrated CO2 capture and desalination technology[J]. , , :1971-1979[J],Energy,2015,93(0)
[71]杨明军,宋永臣,蒋兰兰,刘瑜.Behaviour of hydrate-based technology for H2/CO2 separation in glass beads[J],Separation and Purification Technology,2015,141(0)
[72]Zhang, Yi,Xing, Wanli,Liu, Shuyang,Liu, Yu,Yang, Mingjun,Zhao, Jiafei,Song, Yongchen.Pure methane, carbon dioxide, and nitrogen adsorption on anthracite from China over a wide range of pressures and temperatures: experiments and modeling[J],RSC ADVANCES,2015,5(65):52612-52623
[73]Zhang, Yi,Jian, Weiwei,Zhan, Yangchun,Song, Yongchen,Yang, Mingjun,Zhao, Jiafei,Liu, Yu,Liu, Weiguo,Shen, Yong.Density measurement and equal density temperature of CO2+brine from Dagang - formation from 313 to 363 K[J],KOREAN JOURNAL OF CHEMICAL ENGINEERING,2015,32(1):141-148
[74]Yang, Wenzhe,Zhang, Liang,Liu, Yu,Zhao, Yuechao,Jiang, Lanlan,Yang, Mingjun,Wang, Zhiguo,Wang, Dayong,Song, Yongchen.Dynamic stability characteristics of fluid flow in CO2 miscible displacements in porous media[J],RSC ADVANCES,2015,5(44):34839-34853
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