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Modeling coupled interactions of carbon, water, and ozone exchange between terrestrial ecosystems and the atmosphere. I: Model description

机译:模拟陆地生态系统与大气之间的碳,水和臭氧交换的耦合相互作用。一:型号说明

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A new biophysical model (FORFLUX) is presented to study the simultaneous exchange of ozone, carbon dioxide, and water vapor between terrestrial ecosystems and the atmosphere. The model mechanistically couples all major processes controlling ecosystem flows trace gases and water implementing recent concepts in plant eco-physiology, micrometeorology, and soil hydrology. FORFLUX consists of four interconnected modules―a leaf photosynthesis model, a canopy flux model, a soil heat-, water- and CO_2- transport model, and a snow pack model. Photosynthesis, water―vapor flux and ozone uptake at the leaf level are computed by the LEAFC3 sub-model. The canopy module scales leaf responses to a stand level by numerical integration of the LEAFC3 model over canopy leaf area index (LAI). The integration takes into account (1) radiative transfer inside the canopy, (2) variation of foliage photosynthetic capacity with canopy depth, (3) wind speed attenuation throughout the canopy, and (4) rainfall interception by foliage elements. The soil module uses principles of the diffusion theory to predict temperature and moisture dynamics within the soil column, evaporation, and CO_2 efflux from soil. The effect of soil heterogeneity on field-scale fluxes is simulated employing the Bresler―Dagan stochastic concept. The accumulation and melt of snow on the ground is predicted using an explicit energy balance approach. Ozone deposition is modeled as a sum of three fluxes- ozone uptake via plant stomata, deposition to non-transpiring plant surfaces, and ozone flux into the ground. All biophysical interactions are computed hourly while model projections are made at either hourly or daily time step. FORFLUX represents a comprehensive approach to studying ozone deposition and its link to carbon and water cycles in terrestrial ecosystems.
机译:提出了一种新的生物物理模型(FORFLUX),以研究陆地生态系统与大气之间臭氧,二氧化碳和水蒸气的同时交换。该模型机械地耦合了控制生态系统流量,痕量气体和水的所有主要过程,从而实现了植物生态生理学,微气象学和土壤水文学中的最新概念。 FORFLUX由四个相互关联的模块组成-叶片光合作用模型,冠层通量模型,土壤热,水和CO_2迁移模型以及积雪模型。 LEAFC3子模型计算了叶片水平的光合作用,水汽通量和臭氧吸收量。冠层模块通过LEAFC3模型在冠层叶面积指数(LAI)上的数值积分,将叶片响应缩放到林分级别。积分考虑了(1)冠层内部的辐射传递;(2)冠层深度对树叶光合能力的影响;(3)整个冠层的风速衰减;以及(4)树叶元素对降雨的拦截。土壤模块使用扩散理论的原理来预测土壤柱内的温度和水分动态,土壤中的蒸发和CO_2外排。利用Bresler-Dagan随机概念模拟了土壤异质性对田间尺度通量的影响。使用明确的能量平衡方法可以预测地面上积雪的融化。臭氧沉积的模型是三种通量的总和:通过植物气孔的臭氧吸收,向非蒸腾植物表面的沉积以及向地下的臭氧通量。所有生物物理相互作用均按小时计算,而模型预测则按小时或每日时间步长进行。 FORFLUX是研究臭氧沉积及其与陆地生态系统中碳和水循环的联系的综合方法。

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