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任辉龙,同济大学副教授、博士生导师以及海外优青获得者,长期从事工程数字孪生技术、计算断裂力学、偏微分方程数值解法(有限元法、无网格法)及工程防灾减灾等方向的研究。在计算断裂力学及其数值计算方法上取得一系列创新性成果,提出对偶近场动力学(Dual-Horizon Peridynamics)和非局部算子方法(Nonlocal Operator Method)。已发表SCI论文30余篇(包括5篇ESI高被引论文),涵盖计算力学领域顶级期刊,如CMAME、IJNME、C&S等。Web of Science总引用1600多次,单篇最高引用500多次。出版Springer专著一部,并获得2023年KJ Bathe计算力学青年学者最佳论文奖。
2023国家自然科学基金海外优青项目
代表性论文:
1. Ren,H., Zhuang, X., &Rabczuk, T. (2025). Variational damage model: A new paradigm for fractures. Frontiersof Structural and Civil Engineering, 19(1),1-21.
2. Ren, H., Zhuang, X., Zhu, H., & Rabczuk, T. (2024). Variationaldamage model: A novel consistent approach to fracture. Computers &Structures, 305, 107518.
3. Ren, H., Zhuang, X., Cai, Y., & Rabczuk, T. (2016). Dual-horizonperidynamics. International Journal for Numerical Methods in Engineering,108(12), 1451-1476. (cited by 598)
4. Ren, H., Zhuang, X., Trung, N. T., & Rabczuk, T. (2021). A nonlocaloperator method for finite deformation higher-order gradient elasticity.Computer Methods in Applied Mechanics and Engineering, 384, 113963.(cited by21)
5. Ren, H., Zhuang, X., &Rabczuk, T. (2020). A nonlocal operatormethod for solving partial differential equations. Computer Methods inApplied Mechanics and Engineering, 358, 112621. (cited by 141)
6. Ren, H., Zhuang, X., &Rabczuk, T. (2020). A higher order nonlocaloperator method for solving partial differential equations. ComputerMethods in Applied Mechanics and Engineering, 367, 113132.(cited by 85)
7. Ren, H., Zhuang, X., Trung, N. T.,& Rabczuk, T. (2021). Nonlocaloperator method for the Cahn-Hilliard phase field model. Communicationsin Nonlinear Science and Numerical Simulation, 96, 105687.(cited by 27)
8. Rabczuk, T., Ren, H., & Zhuang, X. (2019). A NonlocalOperator Method for Partial Differential Equations with Application toElectromagnetic Waveguide Problem. Computers, Materials & Continua 59(2019), Nr. 1.(cited by 249)
9. Bie, Y., Ding, K., Ren,H., Bui, T. Q., Rabczuk, T., & Wei, Y. (2025). Simulation offoreign particle erosion-induced failure in thermal barrier coatings: A novelcoupling plastic damage model of dual-horizon peridynamics and FEM. InternationalJournal of Impact Engineering, 105255.

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