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首页> 外文期刊>Geoscientific Model Development Discussions >The biophysics, ecology, and biogeochemistry of functionally diverse, vertically and horizontally heterogeneous ecosystems: the Ecosystem Demography model, version 2.2 – Part 1: Model description
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The biophysics, ecology, and biogeochemistry of functionally diverse, vertically and horizontally heterogeneous ecosystems: the Ecosystem Demography model, version 2.2 – Part 1: Model description

机译:功能多样化,垂直和水平异构生态系统的生物物理学,生态和生物地球化学:生态系统人口统计学模型,版本2.2 - 第1部分:模型描述

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摘要

Earth system models (ESMs) have been developed to represent the role of terrestrial ecosystems on the energy, water, and carbon cycles. However, many ESMs still lack representation of within-ecosystem heterogeneity and diversity. In this paper, we present the Ecosystem Demography model version 2.2 (ED-2.2). In ED-2.2, the biophysical and physiological processes account for the horizontal and vertical heterogeneity of the ecosystem: the energy, water, and carbon cycles are solved separately for a series of vegetation cohorts (groups of individual plants of similar size and plant functional type) distributed across a series of spatially implicit patches (representing collections of micro-environments that have a similar disturbance history). We define the equations that describe the energy, water, and carbon cycles in terms of total energy, water, and carbon, which simplifies the differential equations and guarantees excellent conservation of these quantities in long-term simulation (0.1% error over 50?years). We also show examples of ED-2.2 simulation results at single sites and across tropical South America. These results demonstrate the model's ability to characterize the variability of ecosystem structure, composition, and functioning both at stand and continental scales. A detailed model evaluation was conducted and is presented in a companion paper (Longo et?al.,?2019a). Finally, we highlight some of the ongoing model developments designed to improve the model's accuracy and performance and to include processes hitherto not represented in the?model.
机译:已经开发了地球系统模型(ESMS)以代表陆地生态系统对能量,水和碳循环的作用。然而,许多ESM仍然缺乏生态系统内的异质性和多样性。在本文中,我们介绍了生态系统人口模型版本2.2(ED-2.2)。在ED-2.2中,生物物理和生理过程占生态系统的水平和垂直异质性:为一系列植被队列分开解决能量,水和碳循环(类似尺寸和植物功能类型的个体植物组)分布在一系列空间隐式贴片(表示具有类似干扰历史的微环境集合)。我们定义了在总能量,水和碳方面描述了能量,水和碳循环的等式,这简化了微分方程,并在长期模拟中保证了这些数量的优异保护(0.1%超过50?年)。我们还显示了在单个地点和热带南美洲的ED-2.2仿真结果的例子。这些结果表明了模型在架子和大陆尺度上表征生态系统结构,组成和运作的可变性的能力。进行了详细的模型评估,并在伴侣纸上呈现(Longo et?al。,?2019a)。最后,我们突出了一些持续的模型开发,旨在提高模型的准确性和性能,并包括在迄今为止在?模型中表示的过程。
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