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Simulating C cycles in forest soils: Including the active role of micro-organisms in the ANAFORE forest model

机译:模拟森林土壤中的碳循环:包括微生物在ANAFORE森林模型中的积极作用

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摘要

A soil module was developed to improve on the ecosystem-scale simulations of forest models. The module includes simulations of bacteria, mycorrhizal and non-mycorrhizal fungi. The inclusion of these soil organisms allows for the simulation of several soil biological processes in a more mechanistic way. In this paper the soil module is used in combination with the forest model ANAFORE (ANAlysing Forest Ecosystems) a stand-scale forest model that simulates wood tissue development, carbon (C) and water (H2O) fluxes dynamically from physiological principles. Although the main purpose of this paper is the model description, a showcase run of the new soil model was performed using a Bayesian parameterization procedure for 16 forest sites (pedunculate oak, beech, Scots pine and poplar) on different soils in Belgium. Emphasis was on the soil organic horizons formation. The results show that one single parameter set could be used for the different forests in the study, and yielded reasonably close fits for most sites concerning pH and formation of the humus layer. Although running the Bayesian procedure to obtain good input parameter distributions was time-consuming (several months), runs using the developed parameter set are reasonably fast (days). These results are promising. However, the high uncertainty of both the input and the output of the model indicates that it is mainly useful as an experimental tool, rather than a predictive instrument.
机译:开发了土壤模块以改善森林模型的生态系统规模模拟。该模块包括细菌,菌根和非菌根真菌的模拟。这些土壤生物的包含允许以更机械的方式模拟几种土壤生物过程。在本文中,土壤模块与森林模型ANAFORE(分析森林生态系统)结合使用,该模型是标准规模的森林模型,可以根据生理原理动态模拟木材组织发育,碳(C)和水(H2O)通量。尽管本文的主要目的是模型描述,但使用贝叶斯参数化程序对比利时不同土壤上的16个林场(带花梗的橡木,山毛榉,苏格兰松树和杨树)进行了新土壤模型的展示。重点是土壤有机层的形成。结果表明,一个单一的参数集可用于该研究中的不同森林,并且对于大多数涉及pH和腐殖质层形成的地点,都产生了相当接近的拟合。尽管运行贝叶斯过程以获取良好的输入参数分布是耗时的(数月),但使用已开发的参数集运行的速度却相当快(数天)。这些结果是有希望的。但是,模型输入和输出的高度不确定性表明,它主要用作实验工具,而不是预测工具。

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