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Efficient numerical models for the prediction of acoustic wave propagation in the vicinity of a wedge coastal region

机译:预测楔形沿海地区附近声波传播的有效数值模型

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摘要

In this paper, numerical frequency domain formulations are developed to simulate the 2D acoustic wave propagation in the vicinity of an underwater configuration which combines two sub-regions: the first one consists of a wedge with rigid seabed and free surface, and the second one is assumed to have a rigid flat bottom and a free flat surface. The problem is solved using two different numerical methods: the Boundary Element Method (BEM) and the Method of Fundamental Solutions (MFS). Two models are developed by using a sub-region technique, where only the vertical interface between sub-regions of different geometries has to be discretized. These formulations incorporate Green's functions that take into account the presence of flat rigid and free surfaces and of a wedge. Green's functions are defined using two approaches: the image source method is used to model the rigid flat bottom and free flat interface, whereas the response provided by the wedge sub-region is based on a normal mode solution. Additionally, a MFS and a BEM model are also implemented which require the discretization of the sloping rigid seabed of the wedge, therefore making use of Green's functions for a rigid flat bottom and a free surface (using the image source method). A detailed discussion on the performance of these formulations is performed, with the aim of finding an efficient formulation to solve the problem. It is found that the model based on the MFS and on the sub-region technique has a significantly lower computational cost and is stable, therefore being the most suitable for the analysis of acoustic wave propagation in the studied configurations.
机译:在本文中,开发了数值频域公式来模拟二维声波在水下构造附近的传播,该构造结合了两个子区域:第一个由具有刚性海底和自由表面的楔形组成,第二个则由楔形组成。假定具有坚硬的平坦底部和自由的平坦表面。使用两种不同的数值方法可以解决该问题:边界元方法(BEM)和基本解法(MFS)。通过使用子区域技术开发了两个模型,其中仅需要离散不同几何形状的子区域之间的垂直界面。这些配方结合了格林的功能,其中考虑了平坦的刚性和自由表面以及楔形的存在。 Green的功能使用两种方法定义:图像源方法用于对刚性平坦底部和自由平坦界面进行建模,而楔形子区域提供的响应则基于常规模式解决方案。此外,还实现了MFS和BEM模型,这些模型需要对楔形的倾斜刚性海底进行离散化,因此可以将Green函数用于刚性平坦底部和自由表面(使用图像源方法)。进行了有关这些制剂性能的详细讨论,目的是找到解决问题的有效制剂。发现基于MFS和基于子区域技术的模型具有显着较低的计算成本并且稳定,因此最适合于所研究配置中的声波传播分析。

著录项

  • 来源
    《Engineering analysis with boundary elements》 |2011年第6期|p.855-867|共13页
  • 作者单位

    Department of Civil Engineering, COPPE—Federal University of Rio de Janeiro, CP 68506. CEP 21945-970, Rio de Janeiro, RJ, Brazil;

    CICC, Department of Civil Engineering, University of Coimbra, 3030-788 Coimbra, Portugal;

    Department of Civil Engineering, COPPE—Federal University of Rio de Janeiro, CP 68506. CEP 21945-970, Rio de Janeiro, RJ, Brazil;

    CICC, Department of Civil Engineering, University of Coimbra, 3030-788 Coimbra, Portugal;

    Department of Civil Engineering, COPPE—Federal University of Rio de Janeiro, CP 68506. CEP 21945-970, Rio de Janeiro, RJ, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    underwater acoustics wedge waveguide boundary element method method of fundamental solutions green's functions;

    机译:水下声学楔形波导边界元法基本解格林函数法;
  • 入库时间 2022-08-17 13:08:49

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