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Titlebook: Wave Propagation in Structures; Spectral Analysis Us James F. Doyle Textbook 1997Latest edition Springer Science+Business Media New York 19

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Structure-Fluid Interaction, obvious is noise; noise is the propagation of acoustic energy through the fluid. The interaction can also influence the response of the structure itself; examples include dams, chimney stacks, ships, fuselages, propellers, and transmission cables.
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Higher-Order Waveguides,these models. We will try to clarify the issues involved by considering some exact solutions of waves in waveguides; this is a difficult and mathematically cumbersome area so only a limited number of aspects will be treated. The chapter begins by looking at waves in extended media and waves in bound
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Waves in Thin Plates,ms and . is its equivalent of the Bernoulli-Euler beam theory, whereas the in-plane or . behavior of plates is analogous to that of rods. Many of the behaviors of plates and beams are quite similar, therefore only those aspects that are significantly different will be covered in this chapter.
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Textbook 1997Latest editionn the call for industrial renewal. The general call is urgent as we face profound issues of produc­ tivity and competitiveness that require engineering solutions. among others. The Mechanical Engineering Series features graduate texts and research monographs intended to address the need for informat
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Spectral Analysis of Wave Motion,orm (CFT). However, the numerical evaluation and manipulation of the components requires discretizing the distribution in some manner — the one chosen here is by way of the discrete Fourier transform (DFT). This has the significant advantage that it allows the use of the very efficient fast Fourier transform (FFT) computer algorithm.
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