首页> 外文期刊>Journal of Fluid Mechanics >Sedimentation of inertia-less prolate spheroids in homogenous isotropic turbulence with application to non-motile phytoplankton
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Sedimentation of inertia-less prolate spheroids in homogenous isotropic turbulence with application to non-motile phytoplankton

机译:含惯性激素湍流的惯性激素湍流,应用于非运动型浮游植物的均匀各向同性湍流

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摘要

Phytoplankton are the foundation of aquatic food webs. Through photosynthesis, phytoplankton draw down CO2 at magnitudes equivalent to forests and other terrestrial plants and convert it to organic material that is then consumed by other planktonic organisms in higher trophic levels. Mechanisms that affect local concentrations and velocities are of primary significance to many encounter-based processes in the plankton, including prey-predator interactions, fertilization and aggregate formation. We report results from simulations of sinking phytoplankton, considered as elongated spheroids, in homogenous isotropic turbulence to answer the question of whether trajectories and velocities of sinking phytoplankton are altered by turbulence. We show in particular that settling spheroids with physical characteristics similar to those of diatoms weakly cluster and preferentially sample regions of downwelling flow, corresponding to an increase of the mean settling speed with respect to the mean settling speed in quiescent fluid. We explain how different parameters can affect the settling speed and what underlying mechanisms might be involved. Interestingly, we observe that the increase in the aspect ratio of the prolate spheroids can affect the clustering and the average settling speed of particles by two mechanisms: first is the effect of aspect ratio on the rotation rate of the particles, which saturates faster than the second mechanism of increasing drag anisotropy.
机译:Phytoplankton是水生食品网的基础。通过光合作用,Phytoplankton以相当于森林和其他陆地植物的大小的浮游生物,并将其转换为有机材料,然后在较高的营养水平中被其他浮游生物消耗的有机材料。影响局部浓度和速度的机制对于浮游生物中的许多基于遭遇的过程具有主要意义,包括捕食者相互作用,施肥和聚集形成。我们以沉没的浮游植物的模拟报告的结果,被认为是细长的球状体,在均匀的各向同性湍流中,以回答缺陷浮游植物的轨迹和速度是否通过湍流改变了问题。我们特别展示了具有与硅藻弱簇的物理特性的沉降球状物,并且优先样本区域的沉降流量,对应于静态液中平均沉降速度的平均沉降速度的增加。我们解释了不同的参数如何影响稳定速度以及可能涉及的基础机制。有趣的是,观察到,随着两种机制,可以影响聚合物球体的纵横比的增加可以影响粒子的聚类和平均沉降速度:首先是纵横比对颗粒的旋转速率的影响,这比速度快增加阻力各向异性的第二种机制。

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