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An experimental study on gravity waves through a floating viscoelastic cover

机译:通过悬浮粘弹性覆盖层的重力波实验研究

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We report the results of a laboratory study conducted to investigate the dispersion relation and attenuation of surface waves under viscoelastic floating covers. The study uses oil-doped polydimethylsiloxane (PDMS) with different viscoelastic properties quantified in-situ using a rheometer. An additional test is made with a floating PVC film to estimate possible attenuation in the boundary layer under the cover. Within the frequency range tested, the wavelength deviates from open water case negligibly under the PVC film. But for the PDMS covers, depending on the material property, cover thickness and incident wave period, both wave lengthening and shortening are observed. With thin PDMS covers, the measured wavelength matches well with three theoretical predictions based on different viscoelastic rheological models, while the thick cover shows some discrepancy especially for shorter wave periods. In terms of wave attenuation, however, large discrepancies are observed between the measured data and theoretically predicted results for all PDMS covers. Various mechanisms that could contribute to the discrepancies are considered. The most important mechanism is the boundary layer effect, as demonstrated by the measured wave attenuation from the PVC film. The overall results indicate that the attenuation due to the oscillatory boundary layer underneath the floating cover, which has not been included in the viscoelastic theories, contributes significantly to the discrepancies. Direct measurement of the fluid flow under a periodically flexing cover and the related attenuation rate is a challenging but highly important future study.
机译:我们报告了一项实验室研究的结果,以研究粘弹性浮动覆盖下的色散关系和表面波的衰减。这项研究使用了流变仪就地定量的具有不同粘弹性的掺油聚二甲基硅氧烷(PDMS)。对浮动的PVC膜进行了另一项测试,以评估覆盖层下边界层中可能的衰减。在测试的频率范围内,PVC膜下的波长偏离开水情况可忽略不计。但是对于PDMS覆盖层,根据材料特性,覆盖层厚度和入射波周期,可以观察到波的延长和缩短。对于薄的PDMS覆盖层,测得的波长与基于不同粘弹性流变模型的三个理论预测非常吻合,而厚覆盖层则显示出一些差异,尤其是对于较短的波浪周期。但是,就波衰减而言,对于所有PDMS覆盖而言,在实测数据和理论预测结果之间均观察到较大差异。考虑了可能导致差异的各种机制。最重要的机制是边界层效应,正如从PVC膜测得的波衰减所证明的。总体结果表明,由于未包括在粘弹性理论中的浮动覆盖层下面的振荡边界层引起的衰减极大地导致了差异。在周期性挠曲的覆盖层下直接测量流体流量以及相关的衰减率是一项具有挑战性但非常重要的未来研究。

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