张智琅 助理教授、研究员、博士生导师 电子邮箱:zlzhang@pku.edu.cn |
2025/08 – 今 北京大学,先进制造与机器人学院,助理教授、研究员
2025/03 – 2025/08 苏黎世联邦理工大学,长期研究员
2023/03 – 2025/02 苏黎世联邦理工大学,Research Scientist
2021/03 – 2023/03 新加坡国立大学,博士后
2016/09 – 2020/12 北京大学,力学与工程科学系,博士
2012/09 – 2016/06 四川大学,吴玉章创新人才学院,学士
先进计算方法及其在多介质、多物理场问题中的应用:包括多介质、多尺度、多物理场数值算法;数据驱动智能计算方法;增材制造高保真过程仿真算法等。增材制造原位观测与仿真、机器学习代理模型发展、过程优化,即“观测-仿真-优化”全链条研究。
长期致力于先进计算方法创新与增材制造工艺优化研究,取得多项原创性成果。以第一/通讯作者在J Comput Phys、Comput Methods Appl Mech Eng、Addit Manuf、J Manuf Process、Int J Heat Mass Trans等计算力学、应用数学及先进制造权威期刊发表论文30余篇,包含3篇ESI高被引论文,Google Scholar引用1600余次。主持国家级人才计划青年项目,获国际计算方法大会最佳论文奖以及中国科学英文版年度最佳论文奖等荣誉,并在30余国际学术期刊担任论文评审专家。
本课题组长期招收具有力学、计算机、应用数学/物理、机械等相关专业背景的博士、硕士研究生和博士后,同时欢迎相关专业优秀本科生参与科研项目。
(*通讯作者)
1. A Muther, Zhang ZL*, et al. Identifying melt pool behavior in ceramics PBF-LB via operando synchrotron tomographic microscopy and high-fidelity process modeling. Additive Manufacturing 2025; 103: 104756.
2. Cui Y, Zhang ZL*, et al. A novel concurrent multiscale method based on the coupling of Direct FE2 and CPFEM. Thin-Walled Structures 2024; 206: 112610.
3. Zhang ZL, et al. Experimental and numerical investigations of pore formation mechanisms in cold spray. Journal of Manufacturing Processes 2024; 127:488-510.
4. Zhang ZL, et al. An improved M-SPEM for modeling complex hydroelastic fluid-structure interaction problems. Journal of Computational Physics 2023; 488: 112233.
5. Zhang ZL, et al.Particle-based modeling and investigation of cold spray additive manufacturing with multi-layer multi-track powders. Journal of Manufacturing Processes 2022; 84:565-586.
6. Cui YH, Zhang ZL*, et al. Experimental and numerical studies of NiTi dynamic fracture behaviors under the impact loading. International Journal of Mechanical Sciences 2022; 235: 107724.
7. Zhang ZL, et al. A smoothed particle element method (SPEM) for modelingfluid-structure interaction problems with large fluid deformations. Computer Methods in Applied Mechanics and Engineering 2019; 356:261–293.
8. Zhang ZL, et al. A finite particle method with particle shifting technique for modeling particulate flows with thermal convection. International Journal of Heat & Mass Transfer 2019; 128:1245–1262. (ESI 高被引论文)
9. Zhang ZL, et al. (co-first). Smoothed particle hydrodynamics (SPH) for modeling fluid-structure interactions. SCIENCE CHINA Physics, Mechanics & Astronomy 2019; 62:984701. (ESI 高被引论文)
10. Zhang ZL, et al. A decoupled finite particle method for modeling incompressible flows with free surfaces. Applied Mathematical Modelling 2018; 60:606–633. (ESI 高被引论文)