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作 者:张迪[1] 周富霖 李兵[1] 范军[1] ZHANG Di;ZHOU Fulin;LI Bing;FAN Jun(State Key Laboratory of Ocean Engineering,Collaborative Innovation Center for Advanced Ship and Deep-Sea Exploration,Shanghai Jiao Tong University,Shanghai 200240,China)
机构地区:[1]上海交通大学海洋工程国家重点实验室,高新船舶与深海开发装备协同创新中心,上海200240
出 处:《声学技术》2021年第5期594-600,共7页Technical Acoustics
基 金:预先研究基金项目(61404160307)。
摘 要:基于有限元方法建立了填充不同介质的有限长分舱段圆柱壳声散射数值计算模型,仿真了填充空气-空气、空气-水、水-水三类两舱段圆柱壳声散射特性,并完成了三类两舱段圆柱壳体声散射试验,获取和分析了两舱段圆柱壳体声散射的时间角度谱和频率角度谱特性。利用物理声学方法分析了壳体表面、端面以及内部填充水介质对散射声场的影响,揭示了两舱段圆柱壳声散射频率角度谱中呈现的干涉条纹特征形成机理,为水下分舱段目标,如水下无人航行器的主动声呐探测和识别提供理论支撑。Based on the finite element method, the numerical calculation model for the sound scattering from multi-cabin cylindrical shells filled with different media is established, and the sound scattering characteristics of a two-cabin cylindrical shell filled with air-air, air-water, and water-water respectively are simulated. The sound scattering experiments for the three types of two-cabin cylindrical shells are carried out, and the corresponding time-angle spectra and frequency-angle spectra are obtained and analyzed. The influences of the surface and end face of the shell and the internal water on the scattering sound field are analyzed by the physical acoustic method. The formation mechanism of the interference fringe characteristics in the frequency-angle spectra of the two-cabin cylindrical shell is revealed. The results of the research provide a theoretical support for the active sonar detection and identification of the underwater targets with sub-cabins, such as underwater unmanned vehicles.
关 键 词:分舱段圆柱壳 目标强度 声散射 回波特征 有限元方法
分 类 号:TB56[交通运输工程—水声工程]
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