1 |
By targeting TRAF6, miR-140-3p inhibits TGF-beta 1-induced human osteosarcoma epithelial-to-mesenchymal transition, migration, and invasion Guo QC, Zhang N, Liu S, Pang ZX, Chen Z Biotechnology Letters, 42(11), 2123, 2020 |
2 |
Visualized study of thermochemistry assisted steam flooding to improve oil recovery in heavy oil reservoir with glass micromodels Lyu XC, Liu HQ, Pang ZX, Sun ZX Fuel, 218, 118, 2018 |
3 |
The macroscopic and microscopic analysis on the performance of steam foams during thermal recovery in heavy oil reservoirs Pang ZX, Lyu XC, Zhang FY, Wu TT, Gao ZN, Geng ZG, Luo CD Fuel, 233, 166, 2018 |
4 |
A novel method to calculate consumption of non-condensate gas during steam assistant gravity drainage in heavy oil reservoirs Pang ZX, Wu ZB, Zhao M Energy, 130, 76, 2017 |
5 |
Novel Evaluation Method of Foam Agents for Thermal Recovery in Heavy Oil Reservoirs Pang ZX, Wu YL, Zhao M Energy & Fuels, 30(4), 2948, 2016 |
6 |
Visualization Study on Plugging Characteristics of Temperature Resistant Gel during Steam Flooding Wang YZ, Liu HQ, Pang ZX, Gao M Energy & Fuels, 30(9), 6968, 2016 |
7 |
Pore-Scale Experiment on Blocking Characteristics and FOR Mechanisms of Nitrogen Foam for Heavy Oil: A 2D Visualized Study Wu ZB, Liu HQ, Pang ZX, Wu C, Gaot M Energy & Fuels, 30(11), 9106, 2016 |
8 |
Overall heat transfer coefficient with considering thermal contact resistance in thermal recovery wells Wang L, Liu HQ, Pang ZX, Lv XC International Journal of Heat and Mass Transfer, 103, 486, 2016 |
9 |
Asymmetry Characteristics of Oil Production by Spontaneous Imbibition from Cores with Two Ends Open Meng QB, Liu HQ, Wang J, Pang ZX Transport in Porous Media, 113(3), 735, 2016 |
10 |
Enhance Oil Recovery for Steam Flooding: Low-Temperature Oxidative Decomposition of Heavy Oil with Air Injection Wang CJ, Liu HQ, Pang ZX, Wang J, Chen CY, Wang CL, Wu ZB Energy & Fuels, 29(10), 6242, 2015 |