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高性能计算机网络技术在水下结构分析中的应用
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作者 段宗武 黄群 《国外舰船工程》 2003年第6期29-32,共4页
介绍了并行计算技术使处理器加快运算速度,有利于内存和磁盘资源处理更高频率的声波或更复杂的问题。论述了并行声学振动解决方案的四个步骤。报告了解决两类水下结构所取得的成果。
关键词 计算机网络技术 水下结构分析 并行计算 并行声学振动 解决方案 有限元法 联杆式变换器 声频场 点声源
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Fluid-structure coupled analysis of underwater cylindrical shells 被引量:1
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作者 艾尚茂 孙丽萍 《Journal of Marine Science and Application》 2008年第2期77-81,共5页
Underwater cylindrical shell structures have been found a wide of application in many engineering fields, such as the element of marine, oil platforms, etc. The coupled vibration analysis is a hot issue for these unde... Underwater cylindrical shell structures have been found a wide of application in many engineering fields, such as the element of marine, oil platforms, etc. The coupled vibration analysis is a hot issue for these underwater structures. The vibration characteristics of underwater structures are influenced not only by hydrodynamic pressure but also by hydrostatic pressure corresponding to different water depths. In this study, an acoustic finite element method was used to evaluate the underwater structures. Taken the hydrostatic pressure into account in terms of initial stress stiffness, an acoustical fluid-structure coupled analysis of underwater cylindrical shells has been made to study the effect of hydrodynamic pressures on natural frequency and sound radiation. By comparing with the frequencies obtained by the acoustic finite element method and by the added mass method based on the Bessel function, the validity of present analysis was checked. Finally, test samples of the sound radiation of stiffened cylindrical shells were acquired by a harmonic acoustic analysis. The results showed that hydrostatic pressure plays an important role in determining a large submerged body motion, and the characteristics of sound radiation change with water depth. Furthermore, the analysis methods and the results are of significant reference value for studies of other complicated submarine structures. 展开更多
关键词 underwater structure fluid-structure coupled analysis initial stress natural frequency sound radiation
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