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Active control of structural intensity and acoustic radiation of an infinite Mindlin plate in an acoustic medium.

机译:主动控制声介质中无限Mindlin板的结构强度和声辐射。

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摘要

In this thesis, the active control of the structural intensity and the radiated acoustic power is modeled by the use of an infinite Mindlin plate theory in contact with a heavy acoustic medium. Unlike the conventional Bernoulli-Euler plate theory, the Mindlin theory can predict the vibrational behavior accurately in the high frequency range. In the low frequency range, most of the mechanical power injected into the plate is confined to and travels in the plate. In the high frequency range, i.e., above the coincidence frequency, the mechanical power in the plate transfers to the acoustic medium. The plate is excited by either an infinite line force or a point force, and the corresponding expressions of the structural intensity are derived. One or several controllers on the plate control the structural intensity or the radiated acoustic power following the Steepest Gradient Algorithm.; While controlling the structural intensity at a reference point in a line-excited plate, a line-force controller located at multiples of a half fluid-loaded structural wavelength from the source reduces the structural intensity in the far-field and at the reference point. The radiated acoustic power below the coincidence frequency is reduced when the controller is located within a quarter fluid-loaded structural wavelength of the source. Above the coincidence frequency, a controller located at a distance of multiples of a half fluid-loaded structural wavelength achieves larger reduction of the radiated acoustic power than controllers placed at other locations. The number of controllers becomes important when controlling the structural intensity or the radiated acoustic power from a point-excited plate. In order to achieve global reduction of the structural intensity, a system of four synchronous controllers should be located within a quarter fluid-loaded structural wavelength from the source. With the controller(s) at multiples of a half fluid-loaded structural wavelength, larger reductions of structural intensity are observed than when the controllers are placed at other locations. Significant radiated power reduction is achieved only with the controllers located within a quarter fluid-loaded structural wavelength.
机译:在本文中,通过使用无限的Mindlin板理论与重声介质接触,对结构强度和辐射声功率的主动控制进行建模。与传统的Bernoulli-Euler板理论不同,Mindlin理论可以准确预测高频范围内的振动行为。在低频范围内,注入到极板中的大部分机械功率都局限于极板中并在极板上传播。在高频范围内,即在重合频率之上,板中的机械能传递给声介质。通过无限的线力或点力来激励板,并得出结构强度的相应表达式。板上的一个或几个控制器按照最陡梯度算法控制结构强度或辐射声功率。在控制线激励板的参考点处的结构强度的同时,位于来自源的一半流体加载结构波长的倍数处的线力控制器会降低远场和参考点处的结构强度。当控制器位于光源的四分之一流体负载结构波长内时,低于一致频率的辐射声功率会降低。在重合频率以上,与放置在其他位置的控制器相比,位于一半流体加载结构波长的倍数距离处的控制器可实现更大的辐射声功率降低。当控制点激励板的结构强度或辐射声功率时,控制器的数量变得很重要。为了实现结构强度的整体降低,应将四个同步控制器组成的系统放置在距光源四分之一的流体加载结构波长内。当控制器处于流体加载的一半结构波长的倍数时,与将控制器放置在其他位置相比,观察到的结构强度降低幅度更大。仅使用位于四分之一流体负载结构波长内的控制器才能实现显着的辐射功率降低。

著录项

  • 作者

    Won, Jungyun.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Mechanical.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;应用力学;
  • 关键词

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