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                職稱:特@ 任副教授/碩導















                [1] Yu, X., Li, J., Chen, Z., Wu, K., Zhang, L., Yang, S., Hui, G. and Yang, M., 2020. Determination of CH4, C2H6 and CO2 adsorption in shale kerogens coupling sorption-induced swelling. Chemical Engineering Journal, p.127690.

                [2] Yu, X., Li, J., Chen, Z., Wu, K., Zhang, L., 2020. Effects of an adsorbent accessible volume on methane adsorption on shale. Computer Methods in applied mechanics and engineering370,  p.113222.

                [3] Yu, X., Li, J., Chen, Z., Wu, K., Zhang, L. and Yang, S., 2020. Effects of helium adsorption in carbon nanopores on apparent void volumes and excess methane adsorption isotherms. Fuel, 270, p.117499.

                [4] Yu, X., Li, J., Chen, Z., Wu, K., Zhang, L., Hui, G., Yang M., 2020. Molecular dynamics  computations of bring-CO2/CH4-shale contact angles: implications for CO2 sequestration and enhance  gas recovery. Fuel, 280, p.118590.

                [5] Yu, X., Ahmadinia, M., Shariatipour, S.M., Lawton, D., Osadetz, K. and Saeedfar, A., 2019. Impact of Reservoir Permeability, Permeability Anisotropy and Designed Injection Rate on CO2 Gas Behavior in the Shallow Saline Aquifer at the CaMI Field Research Station, Brooks, Alberta. Natural Resources Research, pp.1-18.

                [6] Zhang, L., Yu, X., Chen, Z., Li, J., Hui, G., Yang, M. and Yu, R., 2020. Capillary dynamics of confined water in nanopores: The impact of precursor films. Chemical Engineering Journal, p.128113.

                [7] Zhang, L., Wu, K., Chen, Z., Li, J., Yu, X. and Yang, S., 2020. Molecular-scale friction at a water– graphene interface and its relationship with slip behavior. Physics of Fluids, 32(9), p.092001.

                [8] Zhang, L., Wu, K., Chen, Z., Li, J., Yu, X., Yang, S., Hui, G. and Yang, M., 2020. Quasi-Continuum Water Flow under Nanoconfined Conditions: Coupling the Effective Viscosity and the Slip Length. Industrial & Engineering Chemistry Research, 59(46), pp.20504-20514.

                [9] Zhang, L., Wu, K., Chen, Z., Li, J., Yu, X., Hui, G. and Yang, M., 2020. The increased viscosity effect for fracturing fluid imbibition in shale. Chemical Engineering Science, p.116352.

                [10] Hui, G., Chen, S., Gu, F., Pang, Y., Yu, X. and Zhang, L., Insights on controlling factors of hydraulically induced seismicity in the Duvernay East Shale Basin. Geochemistry, Geophysics, Geosystems, p.e2020GC009563.

                [11] Li, J., Chen, Z.J., Lei, Z., Gao, Y., Yang, S., Wu, W., Zhang, L., Yu, X., Feng, D., Bi, J. and Wu, K., 2020, October. Modelling the Apparent Viscosity of Water Confined in Nanoporous Shale: Effect of the Fluid/Pore-Wall Interaction. In SPE Annual Technical Conference and Exhibition. Society of Petroleum Engineers.

                [12] Yang, S., Zhang, L., Yu, X. and Chen, Z., 2019, October. Geomechanical Effects on IOR in the Bakken Formation. In Unconventional Resources Technology Conference, Denver, Colorado, 22-24 July 2019 (pp. 225-232). Unconventional Resources Technology Conference (URTeC); Society of Exploration Geophysicists. 


                20219-20248月 中國石油大向上擦除學(華東)自主創新科研計□劃項目,含雜質CO2管道輸送特性的研究,21CX06036A,負責人