节点文献
Boundary effects on modal shape in deep ocean via non-integer order parabolic cylinder functions
【摘要】 This study investigates the effects of ocean boundaries on modal shapes in very-low-frequency(VLF, 1–10 Hz) sound propagation through the deep ocean. Utilizing a normal mode solution formulated in terms of parabolic cylinder functions(PCF), we demonstrate that boundary interactions induce a phase change reduction below-π at frequencies of several hertz. This reduction, in turn, forces a key transition in the solution, shifting the order of the PCF from integer to non-integer values. Analysis of the characteristic shape of the PCF versus its order reveals that these boundary-influenced modes exhibit an energy shift toward deeper regions and a weakened axial convergence of the underwater sound field.
【Abstract】 This study investigates the effects of ocean boundaries on modal shapes in very-low-frequency(VLF, 1–10 Hz) sound propagation through the deep ocean. Utilizing a normal mode solution formulated in terms of parabolic cylinder functions(PCF), we demonstrate that boundary interactions induce a phase change reduction below-π at frequencies of several hertz. This reduction, in turn, forces a key transition in the solution, shifting the order of the PCF from integer to non-integer values. Analysis of the characteristic shape of the PCF versus its order reveals that these boundary-influenced modes exhibit an energy shift toward deeper regions and a weakened axial convergence of the underwater sound field.
【Key words】 very-low-frequency sound propagation; normal modes; parabolic cylinder function;
- 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2026年02期
- 【分类号】TB56
- 【下载频次】1