代表性论文 1). 2020, Interaction analysis between waves and perforated caisson using the revised smoothed particle hydrodynamics method and finite element method [J]. JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 234(1): 253-271. (JCR三区,SCI, EI检索)(第一作者) 2). 2019, Evolution of irregular wave shape over a fringing reef flat [J]. OCEAN ENGINEERING, 192(15): 1-20. JCR一区,SCI, EI检索)(通讯作者) 3).2019, Parameterization of variations for wave energy over bottom slopes[J]. JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 233(1): 398-412.(JCR三区,SCI, EI检索)(通讯作者) 4). 2018, Parameterization of geometric characteristics for extreme waves in shallow water [J]. OCEAN ENGINEERING, 156: 61-71.(JCR一区,SCI, EI检索)(第二作者) 5). 2018, Effect of bottom slope on the nonlinear triad interactions in shallow water [J]. OCEAN DYNAMICS, 68(4-5): 469-483.(JCR二区,SCI, EI检索)(第二,通讯作者) 6). 2017, Numerical Analysis of Hydrodynamic Performance on Perforated Caisson Using Revised SPH Method [J]. JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 231(3) : 768-781.(JCR三区,SCI, EI检索)(第一作者) 7). 2017, Numerical calculation of total horizontal wave force on a perforated caisson with a top cover based on smoothed particle hydrodynamics method [J], JOURNAL OF ENGINEERING FOR THE MARITIME ENVIRONMENT, 231(1): 31-45. (JCR三区,SCI, EI检索)(第一作者) 8). 2017(9),波浪作用下开孔沉箱动应力时域特性数值研究 [J], 工程力学,184-191. (EI检索 )(第一作者) 9). 2015, Numerical Method for Wave Forces Acting on Partially Perforated Caisson [J], CHINA OCEAN ENGINEERING, 29(2) : 197-208. (JCR四区,SCI, EI检索)(通讯作者) |