关注
Wei Lv
Wei Lv
在 s.upc.edu.cn 的电子邮件经过验证
标题
引用次数
引用次数
年份
The potential and mechanism of nonionic polyether surfactants dissolved in CO2 to improve the miscibility of CO2–hydrocarbon systems
W Lv, H Gong, Y Li, Z Li, M Dong
Fuel 326, 125012, 2022
162022
Effects of CO2-philic nonionic polyether surfactants on miscibility behaviors of CO2–hydrocarbon systems: Experimental and simulation approach
W Lv, M Dong, H Sarma, Y Li, Z Li, J Sun, H Gong
Chemical Engineering Journal 464, 142701, 2023
122023
Dissolution behaviors of alkyl block polyethers in co2: experimental measurements and molecular dynamics simulations
W Lv, H Gong, Y Li, Q Sang, L Xu, M Dong
Chemical Engineering Science 228, 115953, 2020
122020
Effects of kerogen on the flow and EOR performance of oil in shale cores during CO2 flooding process investigated by NMR technology
H Gong, H Zhang, W Lv, L Xu, Z Li, M Dong
SPE Journal 27 (04), 2244-2256, 2022
112022
Molecular dynamics study on the dissolution behaviors of poly(vinyl acetate)‐polyether block copolymers in supercritical CO2
H Gong, W Gui, H Zhang, W Lv, L Xu, Y Li, M Dong
Journal of Applied Polymer Science 138 (14), 50151, 2021
62021
Potential of nonionic polyether surfactant-assisted CO2 huff-n-puff for enhanced oil recovery and CO2 storage in ultra-low permeability unconventional reservoirs
W Lv, H Gong, M Dong, Y Li, H Sun, Z Sun, H Jiang
Fuel 359, 130474, 2024
52024
The influence and mechanism of alkyl block polyethers on the interfacial tension and minimum miscibility pressure of CO2 and shale oil
H Gong, W Lv, H Zhang, M Zhang, H Sun, L Xu, M Dong
Fuel 356, 129568, 2024
22024
An Experimental Comparison of CO2 Huff-N-Puff Process in Shale and Tight Reservoirs
L Wei, D Ming-zhe, G Hou-jian, L Ya-jun, Z Chao-fan
Proceedings of the International Field Exploration and Development …, 2021
12021
Nuclear magnetic resonance study on enhanced shale oil recovery by CO2 injection: A case study
H Gong, X Qin, J Pu, W Lv, L Xu
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 45 …, 2023
2023
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