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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Quantification of the microphytobenthic primary production in European intertidal mudflats - a modelling approach
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Quantification of the microphytobenthic primary production in European intertidal mudflats - a modelling approach

机译:欧洲潮间带滩涂微底栖动物初级生产的量化-一种建模方法

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摘要

A deterministic model quantifying the dynamics of the microphytobenthic biomass in the first centimeter of the mud was formulated as part of the MAST-III/INTRMUD project. The main modelled processes are production by photosynthesis, active Vertical migration of the microphytobenthos and global biomass losses, encompassing grazing, mortality and resuspension during immersion periods. The model emphasizes the role of the interface between mud and air, which is crucial for the production. The microalgal biofilm present at the mud surface during day-time emersion periods induces most of the differences between microphytobenthos and phytoplankton communities dynamics. The study of the mathematical properties of the system, under some simplifying assumptions, shows the convergence of the solutions to a stable cyclic equilibrium, in the whole observed range of the frequencies of the physical synchronizers of the production. Resilience time estimates suggest that microphytobenthic biomass attains an equilibrium rapidly, even after a strong perturbation Around the equilibrium, the local model solutions agree fairly with the in situ observed dynamics of the total biomass. The sensitivity analysis suggests investigating the processes governing biomass losses, which are so far uncertain, and may further vary in space and time. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 25]
机译:作为MAST-III / INTRMUD项目的一部分,制定了一个确定性模型,该模型确定了泥浆第一厘米中微底栖生物量的动态。建模的主要过程是通过光合作用进行生产,微植物底栖动物的垂直活动和整体生物量的损失,包括放牧期间的放牧,死亡和重悬。该模型强调了泥浆与空气之间的界面作用,这对生产至关重要。在白天出土期间,存在于泥浆表面的微藻生物膜引起了微底栖动物和浮游植物群落动力学之间的大部分差异。在一些简化的假设下,对系统数学特性的研究表明,在生产的物理同步器的整个频率范围内,解决方案收敛到稳定的循环平衡。复原力时间估算表明,即使在强烈扰动后,微底栖生物量仍能迅速达到平衡,局部模型解与现场观察到的总生物量动态相当吻合。敏感性分析建议调查控制生物量损失的过程,该过程目前尚不确定,并且可能在空间和时间上进一步变化。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:25]

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