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首页> 外文期刊>Marine ecology progress series >Let it flow: how does an underlying current affect wave propagation over a natural seagrass meadow?
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Let it flow: how does an underlying current affect wave propagation over a natural seagrass meadow?

机译:让它流动:底层电流如何影响波在天然海草草甸上的传播?

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Temperate seagrass beds can be found within intertidal and tidal areas of variable hydrodynamic forcing. To investigate the interaction between hydrodynamics and seagrass plants, Zostera noltii meadows were exposed to a range of combinations of waves and flow in a flume. Velocity profiles were obtained to observe the evolution of hydrodynamic forcing due to the presence of a seagrass canopy. Observations under flow without waves agreed with those of previous studies and showed that turbulent kinetic energy (TKE) at the top of the canopy increased with increasing flow velocity as well as with distance from the leading edge. The highest TKE values were achieved for the highest flow velocity without waves, and the presence of waves generally led to reduced TKE values. Profiles of time-averaged downstream velocity were not affected by the presence of waves. However, flow reduction near the bed increased with higher seagrass density, resulting in an S-shaped profile for the highest density and flow velocity. Underlying currents affected wave orbital velocities, causing a reduction of orbital diameters in the free-stream region. In the canopy region, this process was superimposed by the damping effect of the seagrass meadow, but only positive flow components were reduced by seagrass presence. Streamlining and oscillating motion of seagrass leaves were observed under flow and waves, respectively. These processes did not affect the wave/flow attenuation capacity of the meadow, which indicates that the ecosystem-engineering traits of seagrasses are not compromised by increased flow velocity or in the presence of waves.
机译:在可变的水动力强迫作用的潮间带和潮汐区内可以找到温带海草床。为了研究水动力与海草植物之间的相互作用,将Nosterii草地草甸暴露于水槽中波浪和水流的一系列组合中。获得了速度剖面,以观察由于海草冠层的存在而引起的水动力强迫的演变。在没有波浪的情况下进行的观测与先前的研究一致,结果表明,顶篷顶部的湍动能(TKE)随着流速的增加以及与前缘的距离的增加而增加。对于没有波浪的最高流速,可以获得最高的TKE值,并且波浪的存在通常会导致TKE值降低。时间平均下游速度的分布不受波浪的影响。但是,随着海草密度的增加,靠近床层的流量减少也随之增加,从而形成了S形轮廓,以实现最高的密度和流速。底层电流影响波的轨道速度,导致自由流区域的轨道直径减小。在冠层区域,该过程被海草草甸的阻尼作用所叠加,但由于海草的存在,仅减少了正向流动分量。在流动和波浪作用下,分别观察到海草叶片的流线运动和振荡运动。这些过程没有影响草甸的波浪/流量衰减能力,这表明海草的生态系统工程特征不受流速增加或波浪存在的影响。

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