谷歌学术地址: https://scholar.google.com/citations?hl=zh-CN&user=tv7_t40AAAAJ
Researchgate地址: https://www.researchgate.net/profile/Shuai_Li114
2023年度
[57] 吕可, 邹佳俊, 陈颖, 颜帅, 李帅, 张阿漫. 近刚性壁面异相双气泡耦合及射流增强效应研究. 力学学报, 2023, 55(8): 1-13 doi: 10.6052/0459-1879-23-105. (本科生大创项目研究成果)
[56] 顾靖愚, 李帅*, 张阿漫. 水下航行体出水空泡发展和溃灭机理-“跨域飞行器关键技术”专刊. 航空学报, doi: 10.7527/S1000-6893.2023.28820. (已录用).
[55] 陈启航, 张阿漫, 李帅*, 改进的固定边界上方气泡射流方向判定准则, 国防科技大学学报, 2023. (已录用).
[54] Li S-M, Zhang A-M, Cui P, Li S, Liu Y, Vertically neutral collapse of a pulsating bubble at the corner of a free surface and a rigid wall, Journal of Fluid Mechanics, 2023, 962, A28. (SCI).
[53] Han L, Zhang T, Yang D, Han R, Li S, Comparison of Vortex Cut and Vortex Ring Models for Toroidal Bubble Dynamics in Underwater Explosions, Fluids, 2023, 8(4): 131. (SCI)
[52] 赵迪, 徐润泽, 张帅, 李帅*, 改进的高压气枪震源气泡物理模型及其应用, 地球物理学报, 2023, (已录用).
[51] Wang J, Li S*, Gu J, Zhang A M, Particle propulsion from attached acoustic cavitation bubble under strong ultrasonic wave excitation, Physics of Fluids, 2023, 35(4):042009. (SCI)
[50] Zhang A-M*, Li S M, Cui P, Li S, Liu Y L, A unified theory for bubble dynamics, Physics of Fluids, 2023, 34(3): 033323. (SCI, ESI 热点论文)
[49] Zhang S, Chen Q, Liu C, Zhang A M, Li S*, Transient interactions between bubbles and a high-speed cylinder in underwater launches: An experimental and numerical study, Journal of Hydrodynamics, 2023 35(1): 93-103. (SCI)
[48] Zhang A-M*, Li S M, Cui P, Li S, Liu Y L, Interactions between a central bubble and a surrounding bubble cluster, Theoretical and Applied Mechanics Letters, 2023 (Accepted). (SCI)
[47] Feng Y, Jia D, Yue H, Wang J, Song W, Li L, Zhang A-M, Li S*, Chang X*, Zhou D*, Breaking through Barriers: Ultrafast Microbullet Based on Cavitation Bubble, Small, 2023: 2207565. (SCI,封面论文)
2022年度
[46] Li S, Chen J, Guo T, Han R, Water-oil mixing by a cavitation bubble, 14th International Conference on Hydrodynamics, Wuxi, 2022, p313-319.
[45] 隋宇彤,李帅*,明付仁. 截锥型弹体小角度入水空泡及冲击载荷特性实验研究, 第三十三届全国水动力学研讨会, 2022. (优秀论文奖)
[44] Tong S Y, Wang S P, Yan S, Li S. Fluid-structure interactions between a near-field underwater explosion bubble and a suspended plate, AIP Advances, 2022, 12, 095224. (SCI)
[43] Cheng S H, Quan X B, Zhang S, Zhang T Y, Li S*. Modeling tail bubble dynamics during the launch of an underwater vehicle using the boundary element method, Journal of Hydrodynamics, 2022, 34(3): 93-103. (SCI)
[42] Tong S Y, Zhang S, Wang S P, Li S*. Characteristics of the bubble-induced pressure, force and impulse on a rigid wall, Ocean Engineering, 2022, 255: 111484. (SCI)
[41] Sui Y T, Li S*, Ming F R, Zhang A M. An experimental study of the water entry trajectories of truncated cone projectiles: The influence of nose parameters, Physics of Fluids, 2022, 34(5): 052102. (SCI)
[40] Han R, Zhang A M, Tan S. Li S, Interaction of cavitation bubbles with the interface of two immiscible fluids on multiple time scales, Journal of Fluid Mechanics, 2022, 932: A8. (SCI)
[39] Cui R N, Li S*, Wang S P, Zhang A M, Pulsating Bubbles Dynamics near a Concave Surface, Ocean Engineering, 2022, 250: 110989. (SCI)
[38] 刘晓波, 李帅*, 张阿漫, 水下xx冲击波壁压理论及数值计算方法改进研究, 爆炸与冲击, 2022, 42(1):1-13 (EI)
2021年度
[37] Li S, Saade Y, van der Meer D, Lohse D, Comparison of Boundary Integral and Volume-of-Fluid methods for compressible bubble dynamics, International Journal of Multiphase Flow, 2021, 145, 103834. (SCI)
[36] Liu N N, Zhang A M, Cui P, Wang S P, Li S, Interaction of two out-of-phase underwater explosion bubbles, Physics of Fluids, 2021, 33, 106103. (精选论文,Editor' s Pick) (SCI)
[35] Hu Z Y, Li S*, Wang S P, Zhang A M, The role of fluid-structure interaction in pulsating bubble dynamics near a movable structure, Ocean Engineering, 2021, 238, 109650. (SCI)
[34] Kan X Y, Yan J L, Li S*, Zhang A M, Rupture of a rubber sheet by a cavitation bubble: an experimental study, Acta Mechanica Sinica, 2021, 37(10), 1492-1500. (SCI)
[33] Sui Y T, Zhang A M, Ming F R, Li S, Experimental investigation of oblique water entry of high-speed truncated cone projectiles: cavity dynamics and impact load, Journal of Fluids and Structures, 2021, 104, 103305 (SCI)
[32] Yi L, Li S, Jiang H, Lohse D, Sun C, Mathai V, Water entry of spheres into a rotating liquid, Journal of Fluid Mechanics, 2021, 912, R1. (SCI)
[31] 胡振宇, 曹卓尔, 李帅*, 张阿漫. 水中高压脉动气泡与浮体流固耦合特性研究, 力学学报, 2021, 53(4), 944-961 (EI,期刊精选文章)
2020年度
[30] Li S, Prosperetti A, van der Meer D, Dynamics of a toroidal bubble on a cylinder surface with an application to geophysical exploration. International Journal of Multiphase Flow, 2020, 129, 103335 (SCI)
[29] Huang X, Hu H B, Li S, Zhang A M, Nonlinear dynamics of a cavitation bubble pair near a rigid boundary in a standing ultrasonic wave field. Ultrasonics - Sonochemistry, 2020, 64, 104969. (SCI)
[28] Li S, van der Meer D, Zhang A M, Prosperetti A, Lohse D, Modelling large scale airgun-bubble dynamics with highly non-spherical features. International Journal of Multiphase Flow, 2020, 122, 103143. (SCI,期刊高下载论文)
2019年度
[27] 李帅, 张阿漫, 韩蕊. 水中高压脉动气泡水射流形成机理及载荷特性研究. 力学学报, 2019, 51(6): 1666-1681. (EI)
[26] Li T, Zhang A M, Wang S P, Chen G Q, Li S, Nonlinear interaction and coalescence features of oscillating bubble pairs: Experimental and numerical study, Physics of Fluids, 2019, 31, 092108. (SCI)
[25] Li S, Zhang A M, Han R, Cui P, Experimental and numerical study of two underwater explosion bubbles: Coalescence, fragmentation and shock wave emission, Ocean Engineering, 2019, 190, 106414. (SCI)
[24] Li S, Zhang A M, Han R, Ma Q W, 3D full coupling model for strong interaction between a pulsating bubble and a movable sphere, Journal of Computational Physics, 2019, 392: 713-731. (ESI前1%高被引论文,期刊高被引论文) (SCI)
[23] Li, T, Zhang A M, Wang S P, Li S, Liu W T, Bubble interactions and bursting behaviors near a free surface, Physics of Fluids, 2019, 31(4): 042104. (精选论文,Editor' s Pick) (SCI)
[22] Jalaal M, Li S, Klein Schaarsberg M, Qin Y, Lohse D, Destructive mechanisms in laser induced forward transfer. Applied Physics Letters, 2019 114 (21), 213703. (精选论文,Editor' s Pick) (SCI)
[21] Han, R, Tao, L, Zhang, A M, Li, S, Experimental and numerical investigation of the dynamics of a coalesced oscillating bubble near a free surface, Ocean Engineering, 2019, 186, 106096. (SCI)
[20] Han, R, Tao, L, Zhang, A M, Li, S, A three-dimensional modeling for coalescence of multiple cavitation bubbles near a rigid wall, Physics of Fluids, 2019, 31(6), 062107. (SCI)
2018年度
[19] Li S, Zhang A M, Han R, Counter-jet formation of an expanding bubble near a curved elastic boundary, Physics of Fluids, 2018, 30 (12), 121703. (亮点论文,Featured Article) (SCI)
[18] Li S, Khoo B C, Zhang A M, Wang S P, Bubble-sphere interaction beneath a free surface, Ocean Engineering, 2018, 469, 469-483. (SCI)
[17] Li S, Zhang A M, Wang S P, Han R, Transient interaction between a particle and an attached bubble with an application to cavitation in silt-laden flow, Physics of Fluids, 2018, 30(8), 082111. (期刊高被引论文) (SCI)
[16] Han R, Zhang A M, Li S, Zong Z, Experimental and Numerical Study of the Effects of a Wall on the Coalescence and Collapse of Bubble Pairs, Physics of Fluids, 2018. 30(4): 042107. (SCI)
[15] Li T, Wang S P, Li S, Zhang A M, Numerical investigation of an underwater explosion bubble based on FVM and VOF, Applied Ocean Research, 2018, 74, 49-58. (期刊高被引论文) (SCI)
2017年度
[14] Li S, Zhang A M, Han R, Liu Y Q, Experimental and numerical study on bubble-sphere interaction near a rigid wall. Physics of Fluids, 2017, 29(9), 092102. (SCI)
2016年度
[13] Li S, Han R, Zhang A M, Nonlinear interaction between a gas bubble and a suspended sphere. Journal of Fluids and Structures, 2016, 65: 333-354. (SCI)
[12] Han R, Li S, Zhang A M, Wang Q X, Modelling for three dimensional coalescence of two bubbles. Physics of Fluids, 2016, 28(6): 062104. (SCI)
[11] Li S, Ni B Y, Simulation on the interaction between multiple bubbles and free surface with viscous effects. Engineering Analysis with Boundary Elements, 2016, 69: 63-74. (SCI)
[10] Li S, Han R, Zhang A M, Wang Q X, Analysis of pressure field generated by a collapsing bubble. Ocean Engineering, 2016, 117: 22-38. (ESI前1%高被引论文) (SCI)
2015年度
[9] Zhang A M, Li S, Cui J, Study on splitting of a toroidal bubble near a rigid boundary. Physics of Fluids, 2015, 27(6): 062102. (期刊高被引论文) (SCI)
[8] Li S, Li Y B, Zhang A M, Numerical analysis of the bubble jet impact on a rigid wall. Applied Ocean Research, 2015, 50: 227-236. (期刊高被引论文) (SCI)
[7] Li S, Zhang A M, Yao X L, Experimental and numerical study on the dynamic pressure caused by the bubble jet. 9th International Symposium on Cavitation, 2015 (Lausanne). (EI)
2014年度
[6] Li S, Sun L Q, Zhang A M, Dynamic behavior of rising bubble. Acta Physica Sinica, 2014, 18: 184701. (SCI)
[5] Li S, Zhang A M, Study on a rising bubble bouncing near a rigid boundary. Acta Physica Sinica, 2014, 05: 054705. (SCI)
[4] Han R, Zhang A M, Li S, Three-dimensional numerical simulation of crown spike due to coupling effect between bubbles and free surface. Chinese Physics B, 2014, 23(3): 034703. (SCI)
[3] 李帅, 张阿漫, 韩蕊. 气泡多周期运动时引起的流场压力与速度. 力学学报, 2014, 04: 533-543. (EI)
2013年度
[2] Li S, Zhang A M, Wang S P, Experimental and numerical studies on “crown” spike generated by a bubble near free-surface. Acta Physica Sinica, 2013, 19: 194703. (SCI)
[1] Ni B Y, Li S, Zhang A M, Jet splitting after bubble breakup at the free surface. Acta Physica Sinica, 2013, 12: 124704. (SCI)