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Diffuse field sound transmission through sandwich composite cylindrical shells with poroelastic core and external mean flow

机译:通过具有多孔弹性芯和外部平均流的夹心复合圆柱壳的扩散声传播

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Sound transmission through double-shell composite structures sandwiched with poroelastic cores in the presence of an external mean flow is studied analytically with the focus on the effects of random incidence in a diffuse field. The shell motions are described by Love's theory, and the poroelastic core is modelled as an equivalent fluid by considering only the dominant wave based on Biot's theory. The transfer matrix method is employed to solve the vibroacoustic problem with appropriate boundary conditions. The total transmission loss in the diffuse field is calculated numerically for three sandwich configurations over a wide frequency range, and the limiting incidence angle due to total internal reflection is analysed. The numerical results suggest that the effects of the direction angles and external mean flow on the transmission loss and characteristic frequencies observed for a fixed incidence direction have been averaged after integrating over all random incidence directions. Both the poroelastic core and air gap significantly improve the sound insulation performance particularly in the mass-law region, and airborne waves are preferable to frame waves to be insulated by the double-shell sandwich structures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在外部平均流的情况下,通过多孔弹性芯夹在中间的双壳复合结构的声传输进行了分析研究,重点是在扩散场中随机入射的影响。洛夫理论描述了壳的运动,而根据毕奥特的理论,仅考虑主波,将多孔弹性核心建模为等效流体。采用传递矩阵法来解决具有适当边界条件的振动声问题。对于在宽频率范围内的三种夹心结构,数值计算了扩散场中的总传输损耗,并分析了由于全内反射引起的极限入射角。数值结果表明,方向角和外部平均流量对固定入射方向观察到的传输损耗和特征频率的影响已在所有随机入射方向上积分后平均。多孔弹性的芯和气隙都显着改善了隔音性能,特别是在质量定律区域,并且与双层波纹管夹层结构隔离的空气相比,空气声波更可取。 (C)2015 Elsevier Ltd.保留所有权利。

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