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个人简介

2012.8-至今 中国科学院过程工程研究所,研究员 2013.12-2014.03 美国橡树岭国家实验室,高级访问学者 2004.10-2006.02 法国国家科研中心图卢兹流体力学研究所,博士后 2003.10-2012.8 中国科学院过程工程研究所,历任助理研究员、副研究员 1999.9-2003.10 中国科学院过程工程研究所,工学博士,化学工程 1996.9-1999.07 中国矿业大学(北京),工学硕士,矿物加工工程 1992.09-1996.07 太原理工大学,工学学士,矿物加工工程

研究领域

流态化和多相流反应工程 多相反应器的介尺度模型和计算流体力学模拟 气液和气液固多相流动和传递的高级测量技术 多尺度模拟的工业应用 (如费托合成、乳化设备、渣油加氢、CO2矿化、工业结晶过程,与巴斯夫、英国石油、道达尔、联合利华等企业合作)

近期论文

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Yang, N.*, Mesoscale transport phenomena and mechanisms in gas-liquid reaction systems. In: Guy B. Marin and Jinghai Li, eds., Advances in Chemical Engineering, 46, 245-280. Zhou, R., Chen, J., Yang, N.*, Li, J., Fernandez, A., Ricoux, P. Modeling of complex liquid-solid flow of particle swelling in slurry loop reactors, Chemical Engineering Science, 2018, 176, 476-490 Xiao, Q., Wang, J., Yang, N.*, Li, J., Simulation of the multiphase flow in bubble columns with stability-constrained multi-fluid CFD models, Chemical Engineering Journal, 2017, 329, 88-99 Yang, N.*, Xiao, Q., A mesoscale approach for population balance modeling of bubble size distribution in bubble column reactors, Chemical Engineering Science, 2017, 170, 241-250. Zhou, R., Yang, N.*, Li, J., CFD simulation of gas-liquid-solid flow in slurry bubble columns with EMMS drag model, Powder Technology, 2017, 314, 466-479 Qin, C., Chen, C., Xiao, Q., Yang, N.*, Yuan, C., Kunkelmann, C., Cetinkaya, M., Mulheims, K., CFD-PBM simulation of droplets size distribution in rotor-stator mixing devices, Chemical Engineering Science, 2016, 155, 16-26 Shi, W., Yang, N.*, Yang, X., A Kinetic Inlet Model For CFD Simulation of Large-scale Bubble Columns, Chemical Engineering Science, 2016, 158, 108-116 Jiang, X., Yang, N.*, Zhu, J., Yang, B., On the single and two-bubble class models for bubble column reactors. Chemical Engineering Science, 2015, 123, 514-526. Xu, T., Jiang, X., Yang, N.*, Zhu, J., CFD simulation of internal-loop airlift reactor using EMMS drag model. Particuology, 2015, 19, 124-132. Han, Q., Yang, N.*, Zhu, J.*, Liu, M., Onset velocity of circulating fluidization and particle residence time distribution: A CFD-DEM study, Particuology, 2015, 21, 187-195 Xiao, Q., Yang, N.*, Zhu, J., Guo, L. Modeling of cavern formation in yield stress fluids in stirred tanks. AIChE Journal, 2014, 60(8), 3057-3070 Wu, H., Shu, S., Yang, N*, Lian, G., Zhu, S., Liu, M., Modeling of power characteristics for multistage rotor-stator mixers of shear-thinning fluids, Chemical Engineering Science. 2014, 117, 173-182 Xiao, Q., Yang, N.*, Li, J., 2013. Stability-constrained multi-fluid CFD models for gas-liquid flow in bubble columns. Chemical Engineering Science. 2013, 100, 279-292. Shu, S., Yang, N.*, 2013. Direct numerical simulation of bubble dynamics using phase-field model and lattice Boltzmann method. Industrial and Engineering Chemistry Research. In press. Wang, Y., Xiao, Q., Yang, N.*, Li, J., 2012. In-depth exploration of the Dual-Bubble-Size model for bubble columns. Industrial & Engineering Chemistry Research. 51, 2077-2083. Yang, N.*, Wu, Z., Chen, J., Wang, Y., Li, J., 2011. Multi-scale analysis of gas-liquid interaction and CFD simulation of gas-liquid flow in bubble columns. Chemical Engineering Science. 66, 3212-3222. Yang, N.*, Chen, J., Ge, W., Li, J., 2010. A conceptual model for analyzing the stability condition and regime transition in bubble columns. Chemical Engineering Science 65, 517-526. Chen, J., Yang, N.*, Ge, W., Li, J., 2009. Modeling of regime transition in bubble columns with stability condition. Industrial and Engineering Chemistry Research 48, 290-301. Yang, N.*, Chen, J., Zhao, H., Ge, W.*, Li, J.*, 2007. Explorations on multi-scale structure and stability condition in bubble columns. Chemical Engineering Science, 62, 6978-6991. Yang, N.*, Wang, W., Ge, W., Li, J., 2004. Simulation of heterogeneous structure in a circulating fluidized-bed riser by combining the two-fluid model with the EMMS approach. Industrial & Engineering Chemistry Research, 43, 5548-5561. Yang, N.*, Wang, W., Ge, W., Li, J., 2003. CFD simulation of concurrent-up gas-solid flow in circulating fluidized beds with structure-dependent drag coefficient, Chemical Engineering Journal, 96, 71-80.

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