首页> 外文会议>2016 IEEE/OES China Ocean Acoustics >Research on mode conversion of lamb wave at dip end face of elastic plate
【24h】

Research on mode conversion of lamb wave at dip end face of elastic plate

机译:弹性板浸入端面的兰姆波模转换研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Underwater target acoustic scattering is an important aspect of underwater acoustic research. Research on the elastic scattering wave is related to the wave dispersion curves and the exit angle, but the excited condition of a Lamb wave is rarely discussed in the context of elastic plates. The energy distribution for the reflected Lamb waves of several modes when Lamb waves of other anti-symmetric modes are formed by reflection at the end face of an elastic plate is also rarely discussed. However, the research concentrating on the excitation condition of Lamb waves and mode conversion at the end face of a submerged elastic plate can be the basis for target recognition. Based on R.D. Mindlin Hamilton's principle and using an orthogonal complete feature, the frequency dispersion equation of a Lamb wave is derived for an elastic plate in a vacuum; and water, phase velocity, attenuation coefficients and group velocity dispersion curves are obtained. Analysis of the energy ratio between each of two anti-symmetric mode backward Lamb waves resulting from mode conversion when an anti-symmetric Lamb wave is incident at the end face of the plate in single mode is derived. The scattering wave of a submerged elastic plate is measured experimentally, which shows that only the incident anti-symmetric Lamb wave at the critical angle of one mode can directly excite a Lamb wave of this mode in the elastic plate, Lamb waves of other anti-symmetric modes are formed by reflection at the end face of the elastic plate. There is also no energy change between a symmetric Lamb wave and an anti-symmetric Lamb wave, even with mode conversion, if the waves are reflected at the end of the elastic plate. Combined with radiation efficiency of submerged elastic plate energy ratio between each two anti-symmetric mode backward lamb waves resulted from mode conversion when anti-symmetric lamb wave incident at the end face of plate in single mode confirmed validity of the analysis results.
机译:水下目标声散射是水下声学研究的重要方面。弹性散射波的研究与波的色散曲线和出射角有关,但是在弹性板的情况下很少讨论兰姆波的激发条件。当通过弹性板的端面上的反射形成其他反对称模式的兰姆波时,很少讨论几种模式的兰姆波的能量分布。然而,专注于兰姆波激发条件和浸没弹性板端面模式转换的研究可以作为目标识别的基础。根据R.D. Mindlin Hamilton原理,并使用正交完整特征,得出了真空中弹性板的兰姆波频率色散方程。得到水,相速度,衰减系数和群速度色散曲线。推导了当以单模方式将反对称兰姆波入射到板的端面时,由于模式转换而产生的两个反对称模式后向兰姆波之间的能量比。实验测量了浸没式弹性板的散射波,结果表明,只有在一个模态的临界角入射的反对称兰姆波才能在弹性板上直接激发该模态的兰姆波,而另一种反兰姆波则直接在弹性板上激发。通过在弹性板的端面上反射形成对称模式。即使波型在弹性板的末端反射,即使进行模式转换,对称的Lamb波和反对称的Lamb波之间也不会发生能量变化。结合反对称兰姆波在单端面入射时的模态转换结果,结合了每两个反对称模式后向兰姆波之间的淹没弹性板能量比的辐射效率,验证了分析结果的有效性。

著录项

  • 来源
  • 会议地点 Harbin(CN)
  • 作者单位

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Elementary particle vacuum; Transducers; Sonar equipment;

    机译:基本粒子真空换能器声纳设备;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号