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由大规模湍流引起的共振浮游生物斑块化

Resonant plankton patchiness induced by large-scale turbulent flow.

作者信息

McKiver William J, Neufeld Zoltán

机构信息

School of Mathematical Sciences and Complex and Adaptive Systems Laboratory, Dublin, Ireland.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jan;83(1 Pt 2):016303. doi: 10.1103/PhysRevE.83.016303. Epub 2011 Jan 10.

Abstract

Here we study how large-scale variability of oceanic plankton is affected by mesoscale turbulence in a spatially heterogeneous environment. We consider a phytoplankton-zooplankton (PZ) ecosystem model, with different types of zooplankton grazing functions, coupled to a turbulent flow described by the two-dimensional Navier-Stokes equations, representing large-scale horizontal transport in the ocean. We characterize the system using a dimensionless parameter, γ=T(B)/T(F), which is the ratio of the ecosystem biological time scale T(B) and the flow time scale T(F). Through numerical simulations, we examine how the PZ system depends on the time-scale ratio γ and find that the variance of both species changes significantly, with maximum phytoplankton variability at intermediate mixing rates. Through an analysis of the linearized population dynamics, we find an analytical solution based on the forced harmonic oscillator, which explains the behavior of the ecosystem, where there is resonance between the advection and the ecosystem predator-prey dynamics when the forcing time scales match the ecosystem time scales. We also examine the dependence of the power spectra on γ and find that the resonance behavior leads to different spectral slopes for phytoplankton and zooplankton, in agreement with observations.

摘要

在这里,我们研究在空间异质环境中,海洋浮游生物的大规模变异性如何受到中尺度湍流的影响。我们考虑一个浮游植物 - 浮游动物(PZ)生态系统模型,该模型具有不同类型的浮游动物摄食函数,并与由二维纳维 - 斯托克斯方程描述的湍流相耦合,该方程代表海洋中的大规模水平输运。我们使用无量纲参数γ = T(B)/T(F)来表征该系统,其中γ是生态系统生物时间尺度T(B)与流动时间尺度T(F)的比值。通过数值模拟,我们研究了PZ系统如何依赖于时间尺度比γ,并发现两个物种的方差都有显著变化,浮游植物变异性在中等混合率时达到最大值。通过对线性化种群动态的分析,我们基于受迫简谐振荡器找到了一个解析解,该解解释了生态系统的行为,即在强迫时间尺度与生态系统时间尺度匹配时,平流与生态系统捕食者 - 猎物动态之间存在共振。我们还研究了功率谱对γ的依赖性,发现共振行为导致浮游植物和浮游动物具有不同的谱斜率,这与观测结果一致。

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