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个人信息Personal Information
副教授
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:化工海洋与生命学院
办公地点:D07-209
电子邮箱:wangsiqiang@dlut.edu.cn
个人简介Personal Profile
王嗣强,大连理工大学化工海洋与生命学院副教授、博士生导师,中国颗粒学会颗粒计算专业委员会青年理事,大连市青年科技之星。
长期从事颗粒材料计算力学及工程应用研究,在发展任意形态颗粒离散元方法、弹塑性大变形及破碎模型、GPU并行计算以及流固耦合算法方面形成了系统性的研究工作,并研发了具有自主知识产权的计算分析软件SDEM。研究成果成功应用于极地海洋工程、船舶冰载荷预报与工业颗粒过程仿真等领域;主持和参与包括国家重点研发计划、国家自然科学基金面上和青年项目、工信部极地船舶专项等国家及省部级科研项目10余项;曾获中国颗粒学会科技进步二等奖、辽宁省优秀博士学位论文等多项荣誉;出版中英文专著2部,在国内外重要学术期刊发表论文30余篇,获批计算机软件著作权7项。
学术专著
[1] Siqiang Wang, Shunying Ji. Computational Mechanics of Arbitrarily Shaped Granular Materials. Springer, 2024.
[2] 季顺迎, 王嗣强. 任意形态颗粒离散元方法. 科学出版社, 2024.
代表性学术论文
[1] Siqiang Wang, Yingxuan Chao, Michael Zhuravkov, Dongfang Liang, Shunying Ji*. Investigation of permeability of superquadric granular materials based on discrete element-lattice Boltzmann method. Computers and Geotechnics, 2026, 190, 107707.
[2] Siqiang Wang, Qingwei Xu, Dongfang Liang, Shunying Ji*. A novel discrete element method for smooth polyhedrons and its application to modelling flows of concave-shaped particles. International Journal for Numerical Methods in Engineering, 2025, 126: e7628.
[3] Siqiang Wang, Lu Liu, Qingwei Xu, Dongfang Liang, Shunying Ji*. A unified Minkowski sum model for largely deformed granular materials with arbitrary morphologies. Computer Methods in Applied Mechanics and Engineering, 2024, 432: 117427.
[4] Siqiang Wang, Qingwei Xu, Shunying Ji*. A novel Minkowski sum contact algorithm for arbitrarily shaped particles constructed by multiple dilated DEM models. International Journal of Solids and Structures, 2023, 280: 112409.
[5] Siqiang Wang, Dongfang Liang, Shunying Ji*. DEM study on mixing behaviors of concave-shaped particles in rotating drum based on level-set method. Powder Technology, 2023, 430: 118961.
[6] Siqiang Wang, Qi Zhang, Shunying Ji*. GPU-based Parallel Algorithm for Super-Quadric Discrete Element Method and Its Applications for Non-Spherical Granular Flows. Advances in Engineering Software, 2021, 151: 102931.
[7] Siqiang Wang, Shunying Ji*. Poly‑superquadric model for DEM simulations of asymmetrically shaped particles. Computational Particle Mechanics, 2022, 9: 299-313.
[8] Siqiang Wang, Shunying Ji*. Flow characteristics of nonspherical granular materials simulated with multi-superquadric elements. Particuology, 2021, 54: 25-36.
[9] Siqiang Wang, Michael Zhuravkov, Shunying Ji*. Granular flow of cylinder-like particles in a cylindrical hopper under external pressure based on DEM simulations. Soft Matter, 2020, 16: 7760-7777.
[10] Siqiang Wang, Ying Yan, Shunying Ji*. Transition of granular flow patterns in a conical hopper based on superquadric DEM simulations. Granular Matter, 2020, 22: 79.
