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Laboratory study of the effect of vertically varying vegetation density on waves, currents and wave-current interactions

机译:实验室研究垂直变化植被密度对波,电流和波浪电流相互作用的影响

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摘要

Under the influence of vegetation, waves, currents, turbulence as well as sediment processes are all changed, which significantly affect aquatic environment. Vegetation appears spatially heterogeneous in terms of vegetation density in most natural wetlands. However, how vertical heterogeneity of vegetation canopy affects turbulence under waves and currents is still not well understood. In this paper, the effects of different vegetation densities (i.e. sparse, dense and vertically-varying density) on vegetation-induced wave attenuation, mean flow adjustment as well as turbulence are studied through laboratory experiments. For regular waves, higher vegetation density results in smaller wave transmission coefficients and local wave heights. The difference between the effects of vertically uniform and varying vegetation density on wave height decay is significant for deep water waves and insignificant for intermediate water waves. The vertically varying vegetation density slightly changes the wave-averaged velocity distribution, producing reverse flows within the canopy. Turbulence intensity decreases more significantly with increasing water depth in the case with vertically varying vegetation density. For unidirectional flow, the vertically varying vegetation density increases the vertical gradient of mean streamwise velocity compared with the emergent uniform vegetation. The time series ofuoscillates relatively stronger near bottom, and causes higherTKE, which is different with that in oscillatory flow. Compared with the submerged uniform vegetation, the vertical variation of mean velocity affected by vegetation with vertically varying density is smaller in both pure current and wave-current flow. Affected by dense submerged vegetation, the mean velocity of combined wave-current flow is significantly lower than that of pure current, while it is reduced near the bottom and increased in the upper layer comparing with that of pure current under the influence of sparse submerged vegetation.TKEvalues in wave-current flow is promoted in the upper layer with coexisting waves in the case of submerged uniform vegetation, while it is barely affected near the bed. In the case with vertically varying vegetation density,TKEvalues in the wave-current flow are slightly decreased than that in the pure current condition, especially near the bottom.
机译:在植被,波浪,电流,湍流以及沉积物过程的影响下,都改变了,这显着影响了水生环境。在大多数天然湿地的植被密度方面,植被在空间上异质。然而,植被冠层的垂直异质性如何影响波浪和电流的湍流仍然不太了解。本文通过实验室实验研究了不同植被密度(即稀疏,致密和垂直密度)对植被诱导的波衰减,平均流量调节以及湍流的影响。对于常规波,较高的植被密度导致较小的波传输系数和局部波高。垂直均匀和不同植被密度对波高衰减的影响之间的差异对于深水波和中间水波微不足道的显着性。垂直变化的植被密度略微改变波平速度分布,在树冠内产生反向流动。随着垂直变化的植被密度的情况下,湍流强度随着水深而增加的湍流强度更大。对于单向流动,与新鲜均匀植被相比,垂直变化的植被密度增加了平均流速的垂直梯度。 Auastillates的时间序列接近底部相对较强,并导致亮片,这与振荡流量不同。与浸没的均匀植被相比,纯电流和波电流的植被影响的平均速度的平均速度较小。受密集的浸没植被影响,组合波电流的平均速度显着低于纯电流的速度,而在底部附近降低,与稀疏浸没植被的影响下的纯电流相比,下层增加波浪电流中的电流在上层中促进了波浪电流,在浸没的均匀植被的情况下具有共存波,而在床附近几乎没有受到影响。在具有垂直变化的植被密度的情况下,波浪电流中的Tkevalues略微下降,比纯电流条件,特别是在底部附近。

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