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Hydrodynamics of Mangrove Roots and its Applications in Coastal Protection

机译:红树林的流体动力学及其在沿海保护中的应用

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Mangroves are tropical and sub-tropical coastal trees able to resist severe conditions including hurricanes and tropical storms. A potential characteristic of their resilience property is their complex root systems, which can be highly efficient to dissipate tidal energy. To further understand the key hydrodynamic parameters of mangrove trees, we modeled the rigid mangrove root system with a simplified array of circular cylinders (patch) and presented the simulation of the patch wake structure. Five patch porosities ranging from Φ = 2 86% to 96% (Φ = 1 - N (d/D)2) were considered in numerical simulations with ANSYS Fluent. The complex two-dimensional flow structure of the cylinder wake was captured for various streamwise location including far wake region. In addition, the vorticity, and turbulence intensity contours were computed and analyzed. We compared the wake signature of the patch with a single cylinder of the same diameter. We found that, unlike the canonical cylinder, the vorticity field for the porous patch delays the formation of von Kármán vortex street due to the small vortices in the near wake. An increase in patch porosity gives rise to the delay of vortex street formation and decays the wake vorticity and turbulent kinetic energy. The characteristic of the wake structure behind the patch could be used as guiding reference for coastal protection structures inspired by mangrove roots. Additionally, we present mangrove application in coastal protection.
机译:红树林是热带和亚热带沿海树木,能够抵抗严重的条件,包括飓风和热带风暴。它们的恢复力属性的潜在特征是它们的复杂根系,可以高效地消散潮汐能。为了进一步了解红树林的关键流体动力学参数,我们用简化的圆柱体(贴片)建模了刚性红树林系统,并呈现了贴片唤醒结构的模拟。从φ= 2 86%到96%的五个贴片孔隙率(φ= 1 - n(d / d) 2 )用ANSYS流利的数字模拟中考虑。汽缸尾部的复杂二维流动结构被捕获到包括远唤醒区域的各种流动位置。此外,计算和分析涡流和湍流强度轮廓。我们将贴片的唤醒签名与单个直径相同的单个气缸进行了比较。我们发现,与规范圆柱体不同,多孔贴片的涡流场延迟由于近醒来的小涡流导致的vonKármán涡流街的形成。贴片孔隙率的增加导致涡旋街道形成的延迟,并衰减了唤醒涡流和湍流动能。贴片后面的唤醒结构的特点可以用作由红树林的沿海保护结构的指导参考。此外,我们展示了沿海保护的红树林应用。

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