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Vibro-acoustic analysis of un-baffled curved composite panels with experimental validation

机译:无挡板弯曲复合板的振动声分析及实验验证

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The article presents the vibration and acoustic responses of un-baffled doubly curved laminated composite panel structure under the excitation of a harmonic point load. The structural responses are obtained using a simulation model via ANSYS including the effect various geometries (cylindrical, elliptical, spherical and hyperboloid). Initially, the model has been established by solving adequate number of available examples to show the convergence and comparison behaviour of the natural frequencies. Further, the acoustic responses are obtained using an indirect boundary element approach for the coupled fluid-structure analysis in LMS Virtual. lab by importing the natural frequency values. Subsequently, the values for the sound power level are computed using the present numerical model and compared with that of the available published results and in-house experimentally obtained data. Further, the acoustic responses (mean-square velocity, radiation efficiency and sound power level) of the doubly curved layered structures are evaluated using the current simulation model via several numerical experimentations for different structural parameters and corresponding discussions are provided in detail.
机译:文章介绍了在谐波点载荷的激励下,无隔板的双曲叠层复合板结构的振动和声学响应。通过ANSYS使用仿真模型获得结构响应,其中包括影响各种几何形状(圆柱,椭圆,球形和双曲面)。最初,通过求解足够多的可用示例来建立模型,以显示自然频率的收敛和比较行为。此外,在LMS Virtual中,使用间接边界元方法进行耦合的流体结构分析可以获得声学响应。通过导入自然频率值进行实验室。随后,使用当前的数值模型计算声功率级的值,并将其与可用的已发布结果和内部实验获得的数据进行比较。此外,使用电流模拟模型,通过针对不同结构参数的若干数值实验,评估了双曲层状结构的声响应(均方速度,辐射效率和声功率级),并提供了相应的讨论。

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