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Flow velocities and bed shear stresses in a stone cover under an oscillatory flow

机译:在振荡流动下石头覆盖物中的流速和床剪切应力

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摘要

I order to get a better understanding of the interaction between the wave-induced, near-bed oscillatory flow, the stome cover and the sea bed, physical model tests were carried out. The tests were conducted in an oscillating water tunnel. The bottom of the tunnes was covered by one, two and three layers of stones. The flow velocities in the pores of the stones were measured using LDA (Laser Doppler Anemometer). In addition to the velocity measurements, the bed shear stresses were also measured using a hotfilm (Constant Temperature Anemometry). It is found that the boundary layer of the outer flow penetrates quite a substantial amount of thickness into the stone cover, deoending on the flow conditions above. Below this level the velocity remains constant. The level of turbulence in between the stones is found to be very high: 3 to 4 times higher than turbulence level over sipple covered bed in steady current boundary layer without any externally generated turbulence. The bd shear stress is found to be very low, more than ten times smaller than in the case of a smooth base bottom without stone cover.
机译:为了更好地理解波浪引起的近床振荡流,地幔覆盖层和海床之间的相互作用,进行了物理模型测试。测试在振荡水隧道中进行。隧道的底部覆盖着一层,两层和三层的石头。使用LDA(激光多普勒风速计)测量宝石孔隙中的流速。除了速度测量外,还使用热膜(恒定温度风速法)测量了床层的剪切应力。已经发现,在上述流动条件下,外流的边界层穿透相当大的厚度进入石材覆盖层。低于此水平,速度保持恒定。结石之间的湍流水平非常高:在稳定的电流边界层中没有任何外部湍流的情况下,比乳头覆盖床的湍流水平高3至4倍。发现bd的剪切应力非常低,比没有石盖的光滑底部的情况小十倍以上。

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