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Modelling phytoplankton dynamics in fresh waters: affirmation of the PROTECH approach to simulation

机译:淡水中浮游植物动力学建模:PROTECH仿真方法的肯定

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Twenty years after model equations describing the in situ growth rates of phytoplankton were first devised and eight since their successful incorporation into a computer simulation was first published, we set out to affirm the general validity and utility of PROTECH (Phytoplankton Responses To Environmental Change). Elaborated originally for commercial purposes, PROTECH has been shown to be capable of simulating simultaneous seasonal fluctuations in the standing crops of several contrasting species of alga, making it attractive for testing the impacts of various simulated regimes for managing the growth conditions. These have been sufficiently convincing to persuade us to use PROTECH as a research tool; over a number of years, it has been used to simulate such 'traditional' problems of ecology as succession, competitive exclusion and species diversity, in the context of intermediate disturbance. In this paper, we review critically the workings of the model, especially how complex but consistent outcomes emerge in compliance with simple trait-based rules of community assembly. We affirm that temperature-specific growth rates of algae are strongly influenced by algal morphology, that slender species are tolerant of low average light exposure and that periodicity is related to species-specific characteristics of motility and buoyant behaviour. The results of some applications of PROTECH are presented, simulating responses of the phytoplankton community to adjustments in nutrient loading, light penetration and hydrological flushing rates; an explicit investigation of the sensitivity of population responses of Cyanobacteria to eutrophication is also reported, in the context of varying availabilities of combined inorganic nitrogen, Considering futuredevelopments of PROTECH, we affirm the virtues of its central growth equations; we anticipate that future applications will mostly depend upon improved representation of the physical environments it seeks to simulate and that these may more frequently relate to aquatic systems other than the lakes and reservoirs for which it was originally devised.
机译:在首次设计出描述浮游植物原位生长速率的模型方程式之后二十年,自成功将其纳入计算机模拟以来已经有八年,我们着手确认PROTECH(浮游植物对环境变化的反应)的一般有效性和实用性。 PROTECH最初是为商业目的而精心制作的,已被证明能够模拟几种对比藻类的直立作物同时发生的季节性波动,从而使其对于测试各种模拟制度对生长条件的影响具有吸引力。这些足以说服我们使用PROTECH作为研究工具。多年来,在中间扰动的背景下,它已被用于模拟生态学的“传统”问题,例如演替,竞争排斥和物种多样性。在本文中,我们批判性地回顾了该模型的工作原理,特别是如何遵循基于简单特征的社区集会规则如何出现复杂而一致的结果。我们确认藻类的温度特定生长速率受藻类形态的强烈影响,细长的物种对低平均暴露量具有耐受性,并且周期性与物种特定的运动性和浮力特性有关。介绍了PROTECH的一些应用结果,模拟了浮游植物群落对养分负荷,光渗透和水文冲洗率调节的响应;在组合无机氮的利用率不同的情况下,还报告了对蓝细菌对富营养化种群响应的敏感性的明确研究。考虑到PROTECH的未来发展,我们确认其中心增长方程的优势。我们预计,未来的应用将主要取决于对它试图模拟的物理环境的改进表示,并且它们可能会更频繁地与除最初为其设计的湖泊和水库以外的水生系统相关。

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