1 |
Optimization of methane use in cyclic solvent injection for heavy-oil recovery after primary production through experimental and numerical studies Soh Y, Rangriz-Shokri A, Babadagli T Fuel, 214, 457, 2018 |
2 |
Foamy oil flow in heavy oil-solvent systems tested by pressure depletion in a sandpack Zhou X, Zeng FH, Zhang LH, Wang HY Fuel, 171, 210, 2016 |
3 |
Experimental investigation of shale gas production with different pressure depletion schemes Sang Q, Li YJ, Zhu CF, Zhang SJ, Dong MZ Fuel, 186, 293, 2016 |
4 |
Risk assessment of the Groningen geothermal potential: From seismic to reservoir uncertainty using a discrete parameter analysis Daniilidis A, Doddema L, Herber R Geothermics, 64, 271, 2016 |
5 |
Visual investigation and modeling of asphaltene precipitation and deposition during CO2 miscible injection into oil reservoirs Zanganeh P, Dashti H, Ayatollahi S Fuel, 160, 132, 2015 |
6 |
Modeling the effect of power on the growth properties of microcrystalline silicon films in the high-pressure depletion regime Li R, Chen XP, Chen YS, Hao XL, Lu JX, Yang SE Thin Solid Films, 562, 140, 2014 |
7 |
The Effect of Inhibitors Asphaltene Precipitation Due to a Natural Depletion Mechanism in Crude Oil Fard SR, Khadar RH Energy Sources Part A-recovery Utilization and Environmental Effects, 34(20), 1868, 2012 |
8 |
Solar cell of 6.3% efficiency employing high deposition rate (8 nm/s) microcrystalline silicon photovoltaic layer Sobajima Y, Nishino M, Fukumori T, Kurihara M, Higuchi T, Nakano S, Toyama T, Okamoto H Solar Energy Materials and Solar Cells, 93(6-7), 980, 2009 |
9 |
Growth of device grade mu c-Si film at over 50 A/s using PECVD Suzuki S, Kondo M, Matsuda A Solar Energy Materials and Solar Cells, 74(1-4), 489, 2002 |
10 |
High rate growth of microcrystalline silicon using a high-pressure depletion method with VHF plasma Fukawa M, Suzuki S, Guo LH, Kondo M, Matsuda A Solar Energy Materials and Solar Cells, 66(1-4), 217, 2001 |