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Currents in a small channel on a sandy tidal flat

机译:在沙质滩上的小通道中流动

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摘要

Channels affect drainage and bed stresses on tidal flats. Here, near-bottom currents observed on a sandy tidal flat are compared with those observed 35 m away inside a shallow (≈0.3. m deep) channel. For water depths between 0.5 and 2.5. m (when both current meters are submerged), current speeds 0.13 m above the bed on the flat are about 30% greater than those observed 0.13 m above the bed in the channel, and are approximately equal to those observed 0.58 m above the channel bed (0.26 m above the flat elevation). Flow directions on the flat are similar to those in the channel. For flows directed across the channel axis, the ratio of speeds increases from about 1.3 to about 2.2 with increasing water depth. The corresponding ratio of the vertical velocity variances (a proxy for turbulence) decreases from about 1.5 to about 0.2, suggesting that the turbulence near the bed of the channel is greater than that near the bed of the flat for water depths greater than about 1.0. m. Drag coefficients estimated with the vertical velocity variance are approximately 70% larger in the channel than over the visually smoother flat, consistent with prior studies suggesting that channels may increase tidal-flat roughness. For flows directed along the channel axis (in the cross-flat direction), the ratio of speeds (1.2) is similar to the ratio predicted by a cross-flat momentum (along-channel) balance.
机译:河道影响潮滩的排水和床应力。在此,将在沙质潮滩上观测到的近底电流与在浅(≈0.3.m深)通道内35 m处观测到的电流进行比较。适用于0.5至2.5之间的水深。 m(当两个电流表都被淹没时),在平台上床上方0.13 m处的当前速度比在通道中床上方0.13 m处观察到的流速大约高30%,并且大约等于在通道床上方0.58 m处观察到的流速(在海拔平面上方0.26 m)。平面上的流向与通道中的流向相似。对于流经通道轴线的水流,速度比随水深的增加从约1.3增大到约2.2。垂直速度方差的相应比率(湍流的代表)从约1.5减小到约0.2,这表明对于水深大于1.0的水道,靠近床层的湍流大于靠近平台层的湍流。米用垂直速度方差估计的阻力系数在通道中比在视觉上较平滑的平面上高约70%,这与先前的研究表明通道可能会增加潮滩的粗糙度一致。对于沿通道轴(沿横向方向)引导的流,速度之比(1.2)类似于由横向平坦动量(沿通道)平衡预测的比率。

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