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Coupling the PLANKTOM5.0 marine ecosystem model to the OCCAM 1º ocean general circulation model for investigation of the sensitivity of global biogeochemical cycles to variations in ecosystem complexity and physical environment

机译:将pLaNKTOm5.0海洋生态系统模型与OCCam1º海洋大气环流模型相结合,研究全球生物地球化学循环对生态系统复杂性和物理环境变化的敏感性

摘要

The earliest marine ecosystem models consisted of a simple representation of the main features of marine ecosystems, including, typically, variables for phytoplankton, zooplankton, nutrient and detritus (NPZD models). These have been incorporated into ocean general circulation models to give a basic representation of ecosystem function, providing predictions of bulk quantities such as global primary production, export and biomass which can be compared with available observations. A recent trend has been to increase the number of phytoplankton and zooplankton groups modelled, as analogues of different plankton groups observed to exist in the ocean, for example diatoms and cocolithophores (the so-called plankton functional type or PFT approach). It is usually assumed that the increase in complexity of the model will result in simulated ecosystems which more faithfully reproduce observations than NPZD models, but this has not been demonstrated systematically. The robustness of the PFT models to changes in model parameters and to changes to the physical environment in which it is embedded, have not been investigated. As a first step towards these goals, we incorporate a state-of-the-art PFT model, PLANKTOM5.0 into the OCCAM ocean general circulation model. A 6 year simulation is performed, covering the years 1989-1994 with identical parameter choices to an existing run of PLANKTOM5.0 coupled to the OPA general circulation model. This document describes the development of the coupled model and the 6 year simulation. Comparison with the OPA model and sensitivity of the solution to parameter choices will be described in a forthcoming journal paper.
机译:最早的海洋生态系统模型包括海洋生态系统主要特征的简单表示,通常包括浮游植物,浮游动物,养分和碎屑的变量(NPZD模型)。这些已被纳入海洋总环流模型中,以提供生态系统功能的基本表示,提供了诸如全球初级生产,出口和生物量等大宗数量的预测,可以与现有观测值进行比较。最近的趋势是增加建模的浮游植物和浮游动物的数量,以观察到海洋中存在的不同浮游生物的类似物为例,例如硅藻和cocolithophores(所谓的浮游生物功能类型或PFT方法)。通常认为,模型复杂性的增加将导致模拟的生态系统比NPZD模型更忠实地重现观察结果,但这尚未得到系统地证明。尚未研究PFT模型对模型参数的更改以及对其所嵌入的物理环境的更改的鲁棒性。作为实现这些目标的第一步,我们将最先进的PFT模型PLANKTOM5.0整合到了OCCAM海洋总环流模型中。进行了为期6年的模拟,涵盖了1989-1994年,参数选择与与OPA通用循环模型耦合的PLANKTOM5.0的现有运行相同。本文档描述了耦合模型和6年仿真的开发。与OPA模型的比较以及解决方案对参数选择的敏感性将在即将发表的期刊论文中进行介绍。

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  • 作者

    Sinha B.; Anderson T.R.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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