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西安交通大学人居环境与建筑工程学院导师教师师资介绍简介-童 自翔

本站小编 Free考研考试/2021-06-26

Welcome - 童 自翔基本信息

童自翔
博士 副教授
西安交通大学
人居环境与建筑工程学院
人居环境科学与技术研究所




联系方式
E-mail: zxtong@xjtu.edu.cn
办公室:西安交大创新港校区19号楼-2027




站点计数器




研究方向
传热/流动问题的多尺度方法
航空航天热防护材料传热特性预测







Welcome - 童 自翔基本信息

童自翔
博士 副教授
西安交通大学
人居环境与建筑工程学院
人居环境科学与技术研究所




联系方式
E-mail: zxtong@xjtu.edu.cn
办公室:西安交大创新港校区19号楼-2027




站点计数器




研究方向
传热/流动问题的多尺度方法
航空航天热防护材料传热特性预测







Publications - 童 自翔Some Publications

11. Tong Zi-Xiang, Li Ming-Jia*, Li Dong, Gu Zhaolin, Tao Wen-Quan. Two-dimensional numerical model for predicting fouling shape growth based on immersed boundary method and lattice Boltzmann method. Applied Thermal Engineering, 2020, 179: 115755.
10. Tong Zi-Xiang, Li Ming-Jia*, Yan Jun-Jie, Gu Zhao-Lin. A theoretical analysis of the hydrodynamic influence on the growth of microalgae in the photobioreactors with simple growth kinetics. International Journal of Heat and Mass Transfer, 2020, 158: 119986.
9. Li Ming-Jia,Tong Zi-Xiang*, Zhou Zhi-Jie, Huang Dong, Wang Rui-Long. A numerical model coupling bubble flow, light transfer, cell motion and growth kinetics for real timescale microalgae cultivation and its applications in flat plate photobioreactors. Algal Research, 2019, 44: 101727.
8. Tong Zi-Xiang, He Ya-Ling*, Tao Wen-Quan. A review of current progress in multiscale simulations for fluid flow and heat transfer problems: The frameworks, coupling techniques and future perspectives. International Journal of Heat and Mass Transfer, 2019, 137: 1263-1289.
7. Tong Zi-Xiang, Chen Xi*, He Ya-Ling, Liao Xiang-Biao. Coarse-grained area-difference-elasticity membrane model coupled with IB-LB method for simulation of red blood cell morphology. Physica A, 2018, 509: 1183-1194.
6. Tong Zi-Xiang, Li Ming-Jia*, Yan Jun-Jie, Tao Wen-Quan. Optimizing thermal conductivity distribution for heat conduction problems with different optimization objectives. International Journal of Heat and Mass Transfer, 2018, 119: 343-354.
5. Tong Zi-Xiang, Li Ming-Jia, Chen Xi, He Ya-Ling*, Direct coupling between molecular dynamics and lattice Boltzmann method based on velocity distribution functions for steady-state isothermal flow. International Journal of Heat and Mass Transfer, 2017, 115: 544-555.
4. Tong Zi-Xiang, Li Ming-Jia, He Ya-Ling*, Tan Hou-Zhang. Simulation of real time particle deposition and removal processes on tubes by coupled numerical method. Applied Energy, 2017, 185: 2181-2193.
3. Tong Zi-Xiang, Li Ming-Jia, He Ya-Ling*, Tao Wen-Quan. Analysis and numerical tests of lifting relations to reconstruct LBM distribution functions for coupling simulations. International Journal of Heat and Mass Transfer, 2017, 107: 945-955.
2. Tong Zi-Xiang, He Ya-Ling*. A unified coupling scheme between lattice Boltzmann method and finite volume method for unsteady fluid flow and heat transfer. International Journal of Heat and Mass Transfer, 2015, 80: 812-824.
1. Tong Zi-Xiang, He Ya-Ling*, Chen Li, Xie Tao. A multi-component lattice Boltzmann method in consistent with Stefan–Maxwell equations: Derivation, validation and application in porous medium. Computers & Fluids, 2014, 105: 155-165.

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