项目经历: 1. 页岩储层压裂液渗吸、返排机理及多尺度耦合流动机制表征方法的研究,国家自然科学基金项目,30万,主持 2. 胺法改性活性炭多孔介质对二氧化碳气体的复杂吸附机理及数值模拟研究,山东省自然科学基金项目,15万,主持 3. 沥青拌合站节能降耗耦合碳捕集关键技术研究,企事业单位横向课题,105万,主持 4. 新工科背景下多学科交叉融合教学实践体系与创新型复合人才培养模式的研究,校级教改重点项目,1.5万,主持 5. 青岛理工大学高层次人才项目,20万,主持 6. 烟气余热回收耦合碳捕集关键技术与装备,山东省重点研发计划,198万,核心参与 7. “双碳”目标下山东省可再生能源发展模式研究,山东省重点研发计划(软科学项目),5万,核心参与 8. 发酵车间除臭系统优化研究项目,27.5万,核心参与 9. 华能董家口综合智慧能源项目规划方案,18万,核心参与 代表性成果: 发表论文近二十篇,授权2项中国发明专利,公开5项中国发明专利。 代表性论文: 1. 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. 409(3):128113 2. 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. 232:116352 3. 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. 4. 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. 5. Zhang, L., Wu, K., Chen, Z., Yu, X., Li, J., Yang, S., ... & Yang, M. (2021). Gas storage and transport in porous media: From shale gas to helium-3. Planetary and Space Science, 105283. 6. 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. 7. 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 engineering 370, p.113222. 8. 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. 9. 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. 10. 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. 发明专利: 1. 一种二氧化碳吸附捕集工艺中的吸附塔结构,ZL 2022 1 0746139.5 2. 一种小规模天然气水合物储运方法及智能装置,ZL 2022 1 0649324.2 3. 一种太阳能耦合电辅热供热系统及控制方法,CN116878051A 4. 一种多能协同供热系统的控制方法,CN116857713A 5. 一种综合能源系统构建方法,CN117314117A 6. 一种高比例可再生能源多源协同供热构建方法,CN117146326A 7. 一种多能源协同供热系统供热控制方法,CN117146327A |