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Laboratory investigations into wave period effects on sand bed erodibility, under the combined action of waves and currents

机译:在波浪和水流的共同作用下,波浪期对沙床易蚀性的实验室研究

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Laboratory experimental data on sediment threshold conditions for fine to coarse sands, under the combined action of waves and currents are presented. Higher flows are needed to satisfy threshold under short period waves than for longer period waves. The combined threshold velocities indicate that under the shorter (5 s) period waves, the oscillatory and steady flows are independent of each other, but interact to a greater extent as the wave period increases. The derived threshold flow conditions are converted into threshold shear stress values using existing linear and non-linear models. The performance of the models for various periods of oscillation is then examined in view of the assumption that a unique threshold value exists for a particular grain size. All models suggest that the critical stress of a particular grain is higher under shorter period waves, for the range of grain sizes presented. Using different models for waves, of different periods, appears to remove the effect of wave period upon the data. It is suggested that theories used by the existing models are insufficient to fully describe the interaction of the steady and oscillatory flows during the experiments.
机译:给出了在波浪和水流共同作用下,从细砂到粗砂的沉积物阈值条件的实验室实验数据。与短周期的波浪相比,短周期的波浪需要更高的流量来满足阈值。组合的阈值速度表明,在较短(5 s)周期的波中,振荡流和稳定流彼此独立,但随着波周期的增加,相互作用程度更大。使用现有的线性和非线性模型,将得出的阈值流动条件转换为阈值切应力值。然后,考虑到针对特定晶粒尺寸存在唯一阈值的假设,检查了模型在各种振荡周期下的性能。所有模型都表明,在所示的晶粒尺寸范围内,特定晶粒的临界应力在较短的周期波下较高。对不同周期的波动使用不同的模型似乎可以消除波动周期对数据的影响。建议现有模型使用的理论不足以充分描述实验过程中稳定流和振荡流的相互作用。

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