首页> 外文会议>ASME Fluids Engineering Division Meeting >VOLUMETRIC THREE-COMPONENTIAL VELOCITY MEASUREMENTS (V3V) OF FLOW STRUCTURE BEHIND MANGROVE-ROOT TYPE MODELS
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VOLUMETRIC THREE-COMPONENTIAL VELOCITY MEASUREMENTS (V3V) OF FLOW STRUCTURE BEHIND MANGROVE-ROOT TYPE MODELS

机译:红树林型模型后面的流动结构的体积三元成分速度测量值(V3V)

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Mangrove roots produce complex flow structure interactions with their environment, which affect the nutrient, habitat and aquatic animals. Analysis of the flow structure behind the roots extends to a broad range of mangrove-inspired applications that provides understanding into complex flows encountered in unidirectional riverine flows. In this work, we modeled the mangrove roots with a cluster of rigid circular cylinders to investigate the vortex structure downstream of the models. The vortex organization of the patch of cylinder wakes was studied experimentally by time-resolved volumetric three-componential volumetric velocimetry (V3V) at Reynolds numbers 1014 and 3549. The results show that the vortex structure in the 3-D flow field reveals a regular shedding at Re= 1014, forming von Karman vortices dominating the 3D motion. The flow structure behind rigid patches is coherent and the streamwise velocity remains unchanged. The regime for a flexible patch at Re = 3549 produces an intricate pattern where the multiple counter-rotating vortexes distorted substantially and forming a chain of rhombus-like vortex cells in the near wake. The information for the 3D flow feature provides useful information to a robust structure for Seawall erosion.
机译:红树林根系产生复杂的流动结构与其环境相互作用,影响营养,栖息地和水生动物。根部背后的流动结构的分析延伸到广泛的红树林启发应用程序,这些应用程序提供了在单向河流流动中遇到的复杂流中的理解。在这项工作中,我们用一组刚性圆柱体模拟了红树林,以研究模型下游的涡流结构。通过在Reynolds号码1014和3549上通过时间分辨的体积三组成容积体积速度(V3V)通过时间分辨的体积三组分体积速度(V3V)通过时间分辨的体积三组分体积速度进行研究。结果表明,三维流场中的涡旋结构显示出常规脱落在Re = 1014,形成von Karman漩涡,主导3D运动。刚性贴片后面的流动结构是连贯的,流速速度保持不变。 Re = 3549处的柔性贴片的制度产生复杂的图案,其中多个反向旋转涡旋基本上扭曲并在近尾部形成了菱形样涡流链的链。 3D流特征的信息为海堤侵蚀的鲁棒结构提供了有用的信息。

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