首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >A METHOD TO SIMULATE STRUCTURAL INTENSITY FIELDS IN PLATES AND GENERAL STRUCTURES INDUCED BY SPATIALLY AND TEMPORALLY RANDOM EXCITATION FIELDS
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A METHOD TO SIMULATE STRUCTURAL INTENSITY FIELDS IN PLATES AND GENERAL STRUCTURES INDUCED BY SPATIALLY AND TEMPORALLY RANDOM EXCITATION FIELDS

机译:时空激发场在板和一般结构中模拟结构强度场的一种方法

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The structure-borne power in bending waves is well understood, and has been studied by many investigators in ideal beam and plate structures. Most studies to date, however, have considered only the structural intensity induced by deterministic, localized drives. Many structures of practical interest are excited by spatially random pressure fields, such as diffuse and turbulent boundary layer pressure fluctuations. Additionally, such studies typically employ finite differencing techniques to estimate the shear, bending and twisting components of intensity, and are therefore only applicable to simple homogenous uniform structures such as thin plates and beams. Often, however, finite differencing techniques are not applicable to practical structures of interest. The present study introduces a new method to compute the structural intensity induced by spatially random pressure fields in general structures which does not require the use of finite differencing techniques. The results of this method are validated using those obtained using finite-difference based techniques in a thin plate. The simulated fields from the new analytic technique are shown to be similar to those estimated via finite difference-based techniques, thus validating this new method. Both methods show intensity patterns different from those caused by deterministic point drives. The new general method may be applied in the future to complex non-homogenous structures which include discontinuities and curvature.
机译:弯曲波中的固体声功率已经众所周知,许多研究人员已经在理想的梁和板结构中进行了研究。然而,迄今为止,大多数研究都只考虑了确定性的局部驱动所引起的结构强度。许多具有实际意义的结构都受到空间随机压力场(例如扩散和湍流边界层压力波动)的激发。此外,此类研究通常采用有限差分技术来估计强度的剪切,弯曲和扭曲分量,因此仅适用于简单均匀的均匀结构,例如薄板和梁。但是,有限差分技术通常不适用于感兴趣的实际结构。本研究引入了一种新的方法来计算一般结构中由空间随机压力场引起的结构强度,该方法不需要使用有限差分技术。使用在薄板上使用基于有限差分的技术获得的结果验证了该方法的结果。来自新分析技术的模拟场显示与通过基于有限差分的技术估计的场相似,从而验证了该新方法。两种方法都显示出与确定性点驱动所引起的强度模式不同的强度模式。新的通用方法将来可能会应用于复杂的非均匀结构,包括不连续性和曲率。

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