首页> 外文期刊>Shock and vibration >A Prediction Method for Acoustic Intensity Vector Field of Elastic Structure in Shallow Water Waveguide
【24h】

A Prediction Method for Acoustic Intensity Vector Field of Elastic Structure in Shallow Water Waveguide

机译:浅水波导中弹性结构声强度矢量场的预测方法

获取原文
           

摘要

Compared with scalar sound field, vector sound field explained the spatial structure of sound field better since it not only presents the sound energy distribution but also describes the sound energy flow characteristics. Particularly, with more complicated interaction among different wavefronts, the vector sound field characteristics of an elastic structure in a shallow water waveguide are worthy of studying. However, there is no reliable prediction method for the vector sound field of an elastic structure with a high efficiency in a shallow water waveguide. To solve the problem, transfer functions in the waveguide have been modified with some approximations to apply for the vector sound field prediction of elastic structures in shallow water waveguides. The method is based on the combined wave superposition method (CWSM), which has been proved to be efficient for predicting scalar sound field. The rationality of the approximations is validated with simulations. Characteristics of the complex acoustic intensity, especially the vertical components are observed. The results show that, with constructive and destructive interferences in the depth direction, there could be quantities of crests and vortices in the spatial structure of time-dependent complex intensity, which manifest a unique dynamic characteristic of sound energy. With more complicated interactions among the wavefronts, a structure source could not be equivalent to a point source in most instances. The vector sound field characteristics of the two sources could be entirely different, even though the scalar sound field characteristics are similar. Meanwhile, source types, source parameters, ocean environment parameters, and geo parameters may have influence on the vector sound field characteristics, which could be explained with the normal mode theory.
机译:与标量声字段相比,矢量声场解释了声场的空间结构,因为它不仅提出了声能分布,而且还描​​述了声能流量的特性。特别是,在不同的波前的相互作用中具有更复杂的相互作用,浅水波导中的弹性结构的矢量声场特征值得研究。然而,在浅水波导中具有高效率的弹性结构的矢量声场没有可靠的预测方法。为了解决问题,已经用一些近似来修改波导中的传递函数,以应用于浅水波导中的弹性结构的矢量声场预测。该方法基于组合波叠加方法(CWSM),已经证明已经有效地预测标量声场。近似值的合理性验证了模拟。观察到复杂声强度的特性,尤其是垂直部件。结果表明,在深度方向上具有建设性和破坏性干扰,可能存在时间依赖性复合强度的空间结构中的冠状结构,这表明了声能的独特动态特性。在波前的相互作用中具有更复杂的相互作用,在大多数情况下,结构源不能等同于点源。即使标量声场特征是相似的,两个来源的矢量声场特征也可以完全不同。同时,源类型,源参数,海洋环境参数和地理参数可能对矢量声场特征有影响,这可以用正常模式理论解释。

著录项

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