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Acoustic radiation from a submerged hollow FGM sphere

机译:淹没的空心FGM球的声辐射

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摘要

An exact study based on the linear theory of elasticity is presented for the steady-state sound radiation characteristics of an arbitrarily thick radially inhomogeneous elastic isotropic hollow sphere, immersed in and filled with ideal compressible fluids, and subjected to an arbitrary axisymmetric time-harmonic driving force at its internal surface. A modal state equation with variable coefficients is set up in terms of appropriate displacement and stress functions and their spherical harmonics by means of the laminated approximation approach. Taylor's expansion theorem is subsequently employed to solve the modal state equation, ultimately calculating a global transfer matrix. Numerical results are presented for a water-submerged/air-filled steel/zir-conia FGM hollow sphere under an axisymmetric distributed internal pressure force. The effects of shell wall thickness, the material compositional gradient, frequency, and subtended polar angle of the internal pressure force on the far-field radiated pressure directivity patterns as well as the total radiated power are examined. It is demonstrated that the material gradient can significantly change the acoustical characteristics of hollow inhomogeneous sphere, especially for thick shells at high excitation frequencies. Limiting cases are considered and good agreements with available results as well as with the computations made by using a finite element package are obtained.
机译:提出了一个基于弹性线性理论的精确研究,用于研究任意厚度的径向非均质弹性各向同性空心球的稳态声辐射特性,该球浸入并充满理想的可压缩流体,并受到任意轴对称时谐驱动在其内表面施加力。通过层合近似方法,根据适当的位移和应力函数及其球谐函数,建立了具有可变系数的模态状态方程。随后采用泰勒展开定理来求解模态方程,最终计算出一个整体传递矩阵。给出了在轴对称分布的内部压力作用下的水浸式/充气式钢/锆石FGM空心球的数值结果。研究了壳壁厚度,材料成分梯度,频率和内部压力的对向极角对远场辐射压力方向性图以及总辐射功率的影响。结果表明,材料梯度可以显着改变中空非均匀球体的声学特性,特别是对于高激发频率的厚壳。考虑了极限情况,并与可用结果以及使用有限元程序包进行的计算取得了良好的一致性。

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