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Accompanying the frequency shift of the nonlinear resonance of a gas bubble using a dual-frequency excitation

机译:使用双频激励伴随气泡非线性共振的频移

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摘要

An asymptotic method is applied to analyze the nonlinear oscillations of a gas bubble driven by a dual-frequency excitation. More specifically, the latter is considered as a combination of two neighboring, incommensurate frequencies and is treated as a nonstationary excitation. This implies that both amplitude and phase of the bubble response are slowly oscillating at the time scale of the frequency difference, thus leading to a regime of aperiodic oscillations. The approximate solution is successfully compared with numerical simulations and reveals the possibility of achieving larger bubble response amplitude compared to the monofrequency excitation for sufficiently high driving pressure and specific values of the frequency difference. The asymptotic theory captures the generation of additional spectral components coming from the nonlinear mixing of both driving frequencies. This mechanism is responsible for a global enhancement of the dual-frequency bubble response as it enables an energy transfer towards more efficient components which are successively tuned with the nonlinearly shifted resonance frequency of the bubble, thus limiting the saturation due to softening. (C) 2017 Elsevier B.V. All rights reserved.
机译:应用渐变法来分析由双频激发驱动的气泡的非线性振荡。更具体地,后者被认为是两个相邻,不称除频率的组合,并且被视为非营养的激发。这意味着气泡响应的两个幅度和相位在频率差的时刻缓慢振荡,从而导致非周期性振荡的制度。与数值模拟成功进行了近似解,并揭示了与足够高的驱动压力和频率差的特定值相比实现更大的气泡响应幅度的可能性。渐近理论捕获来自驾驶频率的非线性混合的附加光谱分量的产生。该机制负责全球增强双频气泡响应,因为它使能量转移能够朝着更有效的组件呈现与气泡的非线性偏移共振频率连续调谐,因此限制了由于软化而限制饱和度。 (c)2017 Elsevier B.v.保留所有权利。

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