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Flow and Turbulence Structure past a Cluster ofFreshwater Mussels

机译:流过淡水贻贝的流动和湍流结构

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Freshwater mussels are bivalve mollusks that inhabit the substrates of rivers. Their conservation is important to maintain a healthy river ecological system. The present study uses state-of-the-art experimental and numerical techniques to investigate flow and turbulence structure and to estimate the bed friction velocity distributions around a cluster of three semiburrowed mussels placed at a bottom of a flat-bed channel. The ability to describe and quantify these processes and mechanisms is a prerequisite to understanding how mussels are dislocated from the bed and to better comprehend biological aspects related to the life and role (e.g., nutrient transport) of these aquatic organisms. The large-eddy simulation (LES) study provides a detailed discussion of the flow physics and the role of large-scale coherent structures for a case in which the incoming flow is perpendicular to the shells of the mussels. For this limiting test case, strong necklace vortices develop around the upstream base of the mussels and massive separation occurs past the mussels. This provides an extremely complex turbulent flow field that is very challenging to predict using numerical models. As part of the study, data from particle image velocimetry (PIV) are compared with LES. The model can be used as a tool to investigate flow and transport processes at mussel scale for a variety of relevant flow conditions.
机译:淡水贻贝是栖息在河底的双壳类软体动物。他们的养护对于维持健康的河流生态系统很重要。本研究使用了最新的实验和数值技术来研究流动和湍流结构,并估计在平坦通道底部放置的三个半凹贻贝簇周围的床层摩擦速度分布。描述和量化这些过程和机制的能力是了解贻贝如何从河床中脱位以及更好地理解与这些水生生物的生命和作用(例如营养运输)有关的生物学方面的前提。大涡模拟(LES)研究详细讨论了流动物理学以及大规模相干结构在输入流垂直于贻贝壳的情况下的作用。对于此有限的测试用例,贻贝的上游基部周围会形成强烈的项链涡流,并且在贻贝上方会发生大量分离。这提供了极其复杂的湍流场,这对于使用数值模型进行预测非常困难。作为研究的一部分,将来自粒子图像测速(PIV)的数据与LES进行了比较。该模型可以用作研究各种相关流动条件的贻贝规模的流动和运输过程的工具。

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