Wake flow patterns and turbulence around naturally deposited and installed trees in a gravel bed river

IF 0.9 3区 生物学 Q3 MARINE & FRESHWATER BIOLOGY International Review of Hydrobiology Pub Date : 2021-12-15 DOI:10.1002/iroh.202102096
Ingo Schnauder, Christine Anlanger, Katinka Koll
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引用次数: 2

Abstract

Large wood structures, such as wood fragments, debris jams, or entire trees, create flow and habitat diversity in rivers. A key flow feature associated with such structures is the wake, characterised by a core zone of reduced velocity and shear layers at its margins. Wakes are largely controlled by geometric and structural properties of the wood. In the present study, the flow patterns and turbulence created by different wood structures were compared at two study sites: naturally eroded and fragmented oaks (Site A) and artificial poplar installations (Site B). Flow and turbulence were quantified using pointwise velocity measurements with acoustic Doppler velocimeters (ADVs) and surface particle tracking velocimetry (SPTV). The measured flow patterns exhibited similarities with shallow porous wakes that feature fluid advection through the structure into the wake core downstream. Two additional features of wood structures were identified in the present study: (i) the growth of the shear layers was hindered by bed friction like for shallow mixing layers and (ii) the presence of a tree stem and sediment deposit in the wake centre delayed or even suppressed the interaction of the shear layers and vortex street formation similar to a wake-splitter plate. Methodologically, the combined ADV/SPTV measurement approach and the use of analytical models for shallow mixing layers proved to be highly valuable to decipher the complex flow patterns around wood structures in the field.

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尾流模式和湍流周围的自然沉积和安装树木在砾石河床
大型木结构,如木片、碎片堵塞或整棵树,在河流中创造了流量和栖息地的多样性。与这种结构相关的一个关键流动特征是尾迹,其特征是速度降低的核心区和边缘的剪切层。尾迹很大程度上是由木材的几何和结构特性控制的。在本研究中,比较了两个研究地点:自然侵蚀和破碎的橡树(地点A)和人工杨树(地点B),不同木结构产生的流动模式和湍流。使用声波多普勒测速仪(ADVs)和表面粒子跟踪测速仪(SPTV)进行点向速度测量,定量了流动和湍流。测量的流动模式与浅孔尾迹相似,其特征是流体平流通过结构进入尾迹下游核心。本研究还确定了木结构的两个附加特征:(i)剪切层的生长受到床摩擦的阻碍,就像浅混合层一样;(ii)在尾流中心存在的树干和沉积物沉积物延迟甚至抑制了剪切层和旋涡街形成的相互作用,类似于尾流分裂板。在方法上,结合ADV/SPTV测量方法和浅层混合层分析模型的使用被证明对破译现场木结构周围复杂的流动模式具有很高的价值。
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来源期刊
International Review of Hydrobiology
International Review of Hydrobiology 生物-海洋与淡水生物学
CiteScore
4.10
自引率
10.50%
发文量
15
审稿时长
3 months
期刊介绍: As human populations grow across the planet, water security, biodiversity loss and the loss of aquatic ecosystem services take on ever increasing priority for policy makers. International Review of Hydrobiology brings together in one forum fundamental and problem-oriented research on the challenges facing marine and freshwater biology in an economically changing world. Interdisciplinary in nature, articles cover all aspects of aquatic ecosystems, ranging from headwater streams to the ocean and biodiversity studies to ecosystem functioning, modeling approaches including GIS and resource management, with special emphasis on the link between marine and freshwater environments. The editors expressly welcome research on baseline data. The knowledge-driven papers will interest researchers, while the problem-driven articles will be of particular interest to policy makers. The overarching aim of the journal is to translate science into policy, allowing us to understand global systems yet act on a regional scale. International Review of Hydrobiology publishes original articles, reviews, short communications, and methods papers.
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