Simulation of Ecophysiological Processes on 3D Virtual Stands with the ARCHIMED Simulation Platform

J. Dauzat, N. Franck, B. Rapidel, D. Luquet, P. Vaast
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引用次数: 8

Abstract

Most classic ecophysiological models rely on crude representations of canopies as stacks of vegetation layers. Therefore, their use in complex canopies implies complicated adaptations as well as simplifying assumptions that are difficult to validate. Alternatively, the ARCHIMED simulation platform uses 3D virtual stands as a support for numerical simulations of biophysical processes such as leaf irradiation, transpiration and temperature and ultimately carbon assimilation. By doing so, detailed information can be integrated from the individual leaf scale up to the individual plant scale, even within complex stands such as agroforestry systems. Simple numerical methods are used for solving multiple feedbacks between light, energy, water and CO2 transfers at leaf, plant and plot scales. Numerical calculations applied at different scales allow simple implementation of complex models involving intricate processes.
基于ARCHIMED仿真平台的三维虚拟林分生态生理过程模拟
大多数经典的生态生理学模型都依赖于将冠层粗略地表示为植被层的堆叠。因此,在复杂的冠层中使用它们意味着复杂的适应以及难以验证的简化假设。另外,ARCHIMED模拟平台使用3D虚拟展台作为生物物理过程数值模拟的支持,如叶片辐照、蒸腾和温度,以及最终的碳同化。通过这样做,可以将详细信息从单个叶片规模整合到单个植物规模,甚至在复杂的林分中,如农林业系统中也是如此。采用简单的数值方法求解叶片、植物和地块尺度上光、能、水和CO2传输之间的多重反馈。应用于不同尺度的数值计算可以简单地实现涉及复杂过程的复杂模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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