Volumetric Three-Componential Velocity Measurements (V3V) of Flow Structure Behind Mangrove-Root Type Models

Amirkhosro Kazemi, Eduardo E. Castillo, O. Curet, R. Hortensius, Pothos Stamatios
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引用次数: 1

Abstract

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 Kármán 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.
红树林根型模型背后流动结构的体积三分量速度测量(V3V
红树林根系与环境产生复杂的流动结构相互作用,影响营养、生境和水生动物。对树根背后的流动结构的分析扩展到红树林启发的广泛应用,提供了对单向河流流动中遇到的复杂流动的理解。在这项工作中,我们用一组刚性圆柱体模拟了红树林根系,以研究模型下游的涡旋结构。采用时间分辨体积三分量测速仪(V3V)在雷诺数为1014和3549的条件下,对圆柱尾迹斑块的涡组织进行了实验研究。结果表明:三维流场涡结构在Re = 1014处呈现规则的脱落,形成von Kármán涡主导三维运动;刚性斑块后的流动结构是一致的,流向速度保持不变。在Re = 3549处,柔性斑块的状态产生了一个复杂的图案,其中多个反向旋转的漩涡严重扭曲,并在近尾迹中形成了一连串的菱形漩涡细胞。三维流动特征的信息为海堤侵蚀的坚固结构提供了有用的信息。
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