Nonlinear Hydroelastic Interaction among a Floating Elastic Plate, Water Waves, and Exponential Shear Currents

2020年8月26日·
王苹
王苹
,
Yongyan Wang
Corresponding
,
Xintai Huo
· 0 分钟阅读时长
摘要
Nonlinear hydroelastic interaction among a floating elastic plate, a train of deepwater waves, and a current which decays exponentially with depth is studied analytically. We introduce a stream function to obtain the governing equation with the dynamic boundary condition expressing a balance among the hydrodynamic, the shear currents, elastic, and inertial forces. We use the Dubreil-Jacotin transformation to reformulate the unknown free surface as a fixed location in the calculations. The convergent analytical series solutions for the floating plate deflection are obtained with the aid of the homotopy analysis method (HAM). The effects of the shear current are discussed in detail. It is found that the phase speed decreases with the increase of the vorticity parameter in the opposing current, while the phase speed increases with the increase of the vorticity parameter in the aiding current. Larger vorticity tends to increase the horizontal velocity. In the opposing current, the horizontal velocity under the wave crest delays more quickly as the depth increases than that of waves under the wave trough, while in the aiding current case, there is the opposite effect. Furthermore, the larger vorticity can sharpen the hydroelastic wave crest and smooth the trough on an opposing current, while it produces an opposite effect on an aiding current.
类型
出版物
Advances in Mathematical Physics
publications
王苹
Authors
副教授
2004年毕业于上海大学,获硕士理学学位.2015年毕业于上海大学上海市应用数学与力学研究所,获博士工学学位.2015年–2018年在青岛科技大学动力工程与工程热物理流动站从事博士后研究,主要研究非线性偏微分方程的计算与应用、水动力学等问题.获山东省高等学校优秀科研成果奖两项(主持一项,参与一项).指导全国大学生和研究生数学建模竞赛,获国家奖一等奖一项,国家奖二等奖一项,省级奖若干;指导美国大学生数学建模竞赛,获国际一等奖一项、二等奖一项.
Authors