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Nonlinear Wave Propagation in Granular Chains in Water

机译:水中颗粒链中的非线性波传播

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The dynamics of granular media composed of arrays of discrete particles, which dynamically interact through nonlinear Hertzian forces when in contact, has attracted considerable attention due to their highly nonlinear and discontinuous dynamics that enable passively adaptive and tailorable dynamical properties. It has been theoretically and experimentally shown that uncompressed granular chains could support countable infinities of resonances at a different discrete set of mass ratios, leading to substantial and rapid attenuation of propagating pulses due to energy scattering from low-to-high frequencies and wavenumbers by means of radiating traveling waves, and thus having the potential to be applied in ocean engineering. In this work, we computationally study nonlinear wave propagation in one-dimensional chains with fixed boundary in water environment. Coupled governing equation of motion is formulated, which enables numerical analysis of dynamics of the system. We show that, depending on the mass distribution, nonlinear property of the chain may lead to significant reduction of maximum contact force at the boundary. Accordingly, such granular systems can be designed for passive shock mitigation in ocean environment by choosing the appropriate mass distribution so as to dissipate the force of the waves and thus could protect some specified area or object from wave damage.
机译:由离散粒子阵列组成的粒状介质动力学,在接触时会通过非线性赫兹力动态相互作用,由于其高度非线性和不连续的动力学特性(可实现被动自适应和可定制的动力学特性)而备受关注。从理论上和实验上已经表明,未压缩的颗粒链可以支持在不同的离散质量比集合下可计数的共振无限,由于低,高频率和波数的能量散射,导致传播脉冲的大量快速衰减。辐射行波,因此具有在海洋工程中应用的潜力。在这项工作中,我们通过计算研究了在水环境中具有固定边界的一维链中的非线性波传播。制定了耦合的控制运动方程,可以对系统动力学进行数值分析。我们表明,根据质量分布,链的非线性特性可能会导致边界处最大接触力的显着降低。因此,可以通过选择适当的质量分布来将这样的颗粒状系统设计为用于海洋环境中的被动减震,以便消散海浪的力,从而可以保护某些特定区域或物体免受海浪的破坏。

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