The benthic biological submodel in the European regional seas ecosystem model

W. Ebenhöh , C. Kohlmeier , P.J. Radford
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引用次数: 109

Abstract

The submodel describing benthic biology including a bioturbation module as incorporated in the European Regional Seas Ecosystem Model (ERSEM) is discussed. It is linked to a nutrient dynamic model. The structure of the benthic model food web is presented. There are four macrobenthic functional groups, meiobenthos and aerobic and anaerobic bacteria. The modelling uses ‘standard organisms’ as basic building blocks. The choice of parameter values is discussed. The results demonstrate the dependence of the benthic system on the pelagic system. The importance of features such as predation within functional groups for stability of the system is investigated. Detritus input from the pelagic system and detritus recycling is most important in the benthic food web. The web of carbon and nutrient fluxes through the system is analysed. On the basis of the food web analysis, the trophic positions of the functional groups are calculated. Besides the benthic biology, the mathematical formulation of the bioturbation and diffusion enhancement is discussed. Macrobenthic presence and activity enhance diffusion in the sediment and contribute essentially to vertical transport of particulate matter. This is of great importance for the vertical distribution of detritus, and as a consequence, for microbial activity in the sediment layers.

欧洲区域海洋生态系统模型中的底栖生物子模型
讨论了描述底栖生物的子模型,包括欧洲区域海洋生态系统模型(ERSEM)中包含的生物扰动模块。它与营养动态模型有关。介绍了海底模型食物网的结构。有四个大型底栖生物功能群,小型底栖生物和需氧和厌氧细菌。该模型使用“标准生物体”作为基本构建块。讨论了参数值的选择。结果表明海底系统对中上层系统的依赖性。研究了官能团内捕食等特征对系统稳定性的重要性。来自上层系统的碎屑输入和碎屑回收在海底食物网中是最重要的。分析了通过该系统的碳和养分通量网。在食物网分析的基础上,计算了功能群的营养位置。除底栖生物外,还讨论了生物扰动和扩散增强的数学公式。大型底栖生物的存在和活动增强了沉积物中的扩散,基本上有助于颗粒物的垂直运输。这对碎屑的垂直分布以及沉积物层中的微生物活动具有重要意义。
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