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张智琅 研究员、助理教授、博士生导师 电子邮箱:zlzhang@pku.edu.cn 博雅青年学者 |
2025/08 – 今 北京大学,先进制造与机器人学院,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尺度、多物理场问题中的应用:面向多介质、多尺度、多物理场耦合难题,研究高精度、高效率的数值计算方法与仿真技术;发展基于数据驱动的人工智能算法以及数据-物理约束融合的智能计算方法;面向增材制造、芯片制造等先进制程,发展高保真过程仿真算法与多场耦合模型。增材制造原位观测与仿真、AI代理建模、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1700余次,并在30余国际学术期刊担任论文评审专家。
国家级人才计划青年项目(2024)
国际计算方法大会最佳论文奖
中国科学英文版年度最佳论文奖
EABE最高引用论文奖
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 2025; 206: 112610.
3. Ma Y, Zhang ZL*, et al. GPU-accelerated multi-phase, multi-resolution SPH method with ray tracing for laser powder bed fusion. Computer Methods in Applied Mechanics and Engineering 2025; 448, 118423.
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)