Guo Yongjin, Wang Hongdong, Yi Hong
MOE Key Laboratory of Marine Intelligent Equipment and System, State Key Laboratory of Ocean Engineering, Shanghai Jiao Tong University, Shanghai, 200240, PR China.
Sci Rep. 2019 Aug 5;9(1):11307. doi: 10.1038/s41598-019-47809-x.
Theoretical solutions of vibration and sound radiation of submerged finite cylindrical shells with pre-stress were derived by using a modal summation method. Motion equations of cylindrical shells with pre-stress were established on the basis of Flügge theory. Additional impedance caused by pre-stress was added to the basic vibration equation. Pre-stress was expressed by uniform and trigonometric forms to obtain the sound radiation power, mean quadratic velocity and radiation efficiency of cylindrical shells. Numerical calculation was conducted to study the effects of tensile and compressive stresses, stress direction, value size and distribution on vibration and sound radiation of cylindrical shells. This study may provide a reference for controlling sound radiation of underwater vehicles.
采用模态叠加法推导了具有预应力的水下有限圆柱壳的振动和声辐射理论解。基于弗吕格理论建立了具有预应力的圆柱壳的运动方程。将预应力引起的附加阻抗添加到基本振动方程中。预应力用均匀形式和三角形式表示,以获得圆柱壳的声辐射功率、均方速度和辐射效率。进行了数值计算,研究了拉应力和压应力、应力方向、值大小和分布对圆柱壳振动和声辐射的影响。该研究可为水下航行器的声辐射控制提供参考。