发表论文
在《Journal of Computational Physics》,《Ocean Engineering》,《 Mathematics and Computers in Simulation》,《Computers & Fluids》,《力学学报》、《物理学报》等国内外学术期刊上发表了50多篇论文,其中包括20多篇SCI论文。
[1] G.L. Li, D.Y. Shi, Y.Y. Chen, X.L. Yao, Z.K. Wang, Wasim M.K. Helal. A study on damage characteristics of double-layer cylindrical shells subjected to underwater contact explosion. International Journal of Impact Engineering, 2023, 172, 104428.
[2] W.Q. Zhang, X.L. Yao, Z.K. Wang*. Research on shock resistance of shipborne equipment based on multibody system discrete-time transfer matrix method. Ships and Offshore Structures, 2022, 17, 1522-1531.
[2] X.W. Cui, Z.K. Wang*. A coupled Two-relaxation-time Lattice Boltzmann-Volume penalization method for flows past obstacles. Mathematics and Computers in Simulation, 2022, 198, 85-105.
[3] 姚熊亮,熊帮虎,王志凯,等.水下爆炸冲击波载荷沿燃气轮机结构传递特征[J].兵工学报,2022,43(09):2367-2378.
[4] 王莹,秦业志,王志凯,等.不同类型炸药水下爆炸时冰层损伤特性研究[J].振动与冲击,2022,41(09):189-198.
[5] 秦业志,王莹,王志凯,等.小当量柱型装药水下近场爆炸固支单层方形钢板毁伤特性研究[J].振动与冲击,2021,40(07):29-36.
[6] Y. Wang, Y.Z. Qin, Z.K. Wang*. Numerical study on ice damage characteristics under single explosive and combination explosives. OCEAN ENGINEERING, 2021.
[7] 王志凯,陈锦,姚熊亮,等.基于灰色理论的大型舰船结构重构方法[J].上海交通大学学报,2021,55(11):1429-1437.
[8] 张文启,姚熊亮,王志凯,等.浮动冲击平台海上试验爆源定位方法[J].哈尔滨工程大学学报,2021,42(11):1566-1572.
[9] 姚熊亮,王治,叶墡君,等.舰船靶标设计中的材料等效方法[J].哈尔滨工程大学学报,2021,42(08):1110-1116.
[10] 秦业志,王莹,王志凯,等.小当量柱型装药水下近场爆炸固支单层方形钢板毁伤特性研究[J].振动与冲击,2021,40(07):29-36.
[11] Y.N. Wang, N.N. Yang, W.Q. Zhang, X.L. Yao, Z.K. Wang*. Material point method and its application in different failure modes of grillage structure under penetration. Ships and Offshore Structure, 2019.
[12] W.Q. Zhang, X.L. Yao, Y.N. Wang, Z.K. Wang*. Experimental study and numerical model adequacy assessment of hull structure dynamic response subject to underwater explosion. Ships and Offshore Structure, 2019.
[13] 姚熊亮,屈子悦,张乐,等.水下爆炸圆柱壳冲击波绕射特性分析[J].哈尔滨工程大学学报,2020,41(01):9-16.
[14] 王志凯,陈志鹏,杨娜娜,等.初始缺陷对复合材料层合板力学性能影响研究[J].西北工业大学学报,2019,37(04):730-736.
[15] 王志凯,周鹏,孙波,等.气泡及其破碎兴波对浮动冲击平台影响探究[J].爆炸与冲击,2019,39(09):92-103.
[16] 王志凯,王逸南,孙贝生,等.浮动冲击平台横向冲击谱受外形结构的影响[J].爆炸与冲击,2019,39(10):94-101.
[17] 吴广明,许亚东,李正国,等.舱室复合材料结构的抗爆性能数值仿真[J].中国舰船研究,2019,14(04):14-21.
[18] 孙丽萍,陆程,王志凯,等.格子玻尔兹曼法多块网格的交界结构优化研究[J].计算力学学报,2019,36(01):13-20.
[19] Z.K. Wang*, X.L. Yao, N.N. yang, Z.H. Xu. Simulation of Fluid and Structure Interface with Immersed Boundary-Lattice Boltzmann Method Involving Turbulence Models. Mathematical Problems in Engineering, 2018.
[20] X.W. Cui*, X.L. Yao, Z.K. Wang. A Coupled Volume Penalization-Thermal Lattice Boltzmann method for thermal flows. International Journal of Heat and Mass Transfer, 2018.
[21] Z.K. Wang*, X.L. Yao. Immersed boundary-lattice Boltzmann simulation of a rotating flat plate interacting with laminar flows. International Journal of Modern Physics B, 2018.
[22] D.Y. Shi, H. Li, Z.K. Wang. Study on load fluctuation and vibration characteristics on structure caused by Dam Breaking Structure. 47rd International Congress and Exposition on Noise Control Engineering: Impact of noise control engineering, 2018.
[23] X.W. Cui, X.L. Yao*, Z.K. Wang. A hybrid wavelet-based adaptive immersed boundary finite-difference lattice Boltzmann method for two-dimensional fluid-structure interaction. Journal of Computational Physics, 2017.
[24] 李红群,史冬岩,王志凯,等.不同壁面绕流特性的格子Boltzmann模拟研究[J].计算力学学报,2017,34(02):219-225.
[25] T. Liu, D.Y. Shi, Z.K. Wang. Flow and aeroacoustic simulations for a cylinder using Lattice Boltzmann and Acoustic Analogy Methods. 46rd International Congress and Exposition on Noise Control Engineering: Taming Noise and Moving Quiet, 2017.
[26] D.Y. Shi*, Y.X. Gou, Z.K. Wang. Double cylinder coupling characteristics of the flow field around based on Lattice Boltzmann method. 46rd International Congress and Exposition on Noise Control Engineering: Taming Noise and Moving Quiet, 2017.
[27] P.F. Guo, D.Y. Shi, Y.K. Li, Z.K. Wang. Investigation and optimization for blast resistant performaces of a graded aluminum foam sandwich structure. 46rd International Congress and Exposition on Noise Control Engineering: Taming Noise and Moving Quiet, 2017.
[28] X.Y. Xue, D.Y. Shi, Z.K. Wang. Research on the characteristics of dynamic response and absorbing energy of honeycomb sandwich panel under blast load. 45rd International Congress and Exposition on Noise Control Engineering: Towards a Quieter Future, 2016.
[29] Z.K. Wang, D.Y. Shi, A.M. Zhang. Three-dimensional lattice Boltzmann simulation of bubble behavior in a flap-induced shear flow. Computers & Fluids, 2015
[30] D.Y. Shi, Z.K. Wang, A.M. Zhang. Parallel lattice Boltzmann simulation of bubble rising and coalescence in viscous flows. International Journal of Modern Physics B, 2015.
[31] D.Y. Shi, Z.K. Wang, A.M. Zhang. Multi-relaxation time (MRT) lattice Boltzmann model for plane wave disseminating process simulation. 44rd International Congress and Exposition on Noise Control Engineering, 2015.
[32] D.Y. Shi, H.Q. Li, Z.K. Wang. Investigation of streamwise oscillating characteristics of a near-wall circular cylinder. 44rd International Congress and Exposition on Noise Control Engineering, 2015.
[33] D.Y. Shi, H.X. Ai, Z.K. Wang. The analysis on the dynamic response and acoustic radiation of bionic venation layout stiffened plate under impact load. 44rd International Congress and Exposition on Noise Control Engineering, 2015.
[34] 史冬岩,王志凯,张阿漫.相同尺度下气泡与复杂壁面的耦合特性研究[J].物理学报,2014,63(17):189-203.
[35] 史冬岩,王志凯,张阿漫.任意复杂流-固边界的格子Boltzmann处理方法[J].物理学报,2014,63(07):221-229.
[36] D.Y. Shi, Z.K. Wang, A.M. Zhang. A novel lattice Boltzmann model simulating gas-liquid two-phase flow. Chinese Journal of Theoretical and Applied Mechanics,2014.
[37] D.Y. Shi, H.Q. Li, Z.K. Wang. Lattice-Boltzmann simulation of circular column coupled with square column in cross flow. 43rd International Congress on Noise Control Engineering, 2014.
[38] H. Jiao, D.Y. Shi, Z.K. Wang. Interaction of a pair of horizontally aligned bubbles in gravity field. 43rd International Congress on Noise Control Engineering, 2014.
[39] D.Y. Shi, Z.K. Wang, A.M. Zhang. Application of lattice Boltzmann method to research bubble interacting with spherical particle. 43rd International Congress on Noise Control Engineering, 2014.
[40] D.Y. Shi, Z.K. Wang, A.M. Zhang. Three-dimensional simulation of bubble dynamics in a narrow pipe using lattice Boltzmann method. International Symposium of Cavitation and Multiphase Flow, 2014.