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Localisation of Rayleigh-Bloch waves and damping of resonant loads on arrays of vertical cylinders

机译:瑞利 - 波浪波浪的定位和垂直汽缸阵列上的谐振负载的阻尼

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Linear potential-flow theory is used to study loads imposed on finite line arrays of rigid, bottom-mounted, surface-piercing, vertical cylinders by surface water waves. Perturbations in the cylinder locations are shown to damp the resonant loads experienced by the unperturbed array. A relationship is established between the damping and the phenomenon of Anderson localisation. Specifically, the Rayleigh Bloch waves responsible for the resonant loads are shown to attenuate along the array when perturbations are introduced, resulting in localisation when the attenuation rate is sufficiently large with respect to the array length. Further, an efficient solution method for line arrays is introduced that captures the Rayleigh Bloch wave modes supported by unperturbed arrays from the scattering characteristics of an individual cylinder.
机译:线性电位流动理论用于通过地表水波研究刚性,底部,表面刺穿,垂直气缸的有限线阵列上的负载。 汽缸位置的扰动被示出为抑制不受干扰的阵列所经历的谐振载荷。 在阻尼和安德森本土化现象之间建立了一种关系。 具体地,作为引入捕获时,示出了负责谐振负载的瑞利光伏沿阵列衰减,导致衰减速率相对于阵列长度足够大的定位。 此外,引入了用于线阵列的有效解决方法,其捕获从单独圆筒的散射特性的不受干扰的阵列支撑的瑞利·布隆波形。

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