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Advanced-Canopy-Atmosphere-Soil Algorithm (ACASA Model) for Estimating Mass and Energy Fluxes

机译:用于估计质量和能量通量的高级机盖大气土壤算法(ACASA模型)

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摘要

There is a recognized need to improve land surface models that simulate mass and energy fluxes between terrestrial ecosystems and atmosphere. In particular, long-term land planning strategies at local and regional scales require better understanding of agricultural ecosystem capacity to exchange CO_2 and water. One of the more elaborate models for flux modelling is the Advanced Canopy-Atmosphere-Soil Algorithm (ACASA) model (Pyles et al., 2000), which provides micro-scale and regional-scale fluxes. The ACASA model allows for characterization of energy and carbon fluxes. It is a higher-order closure model used to estimate fluxes and profiles of heat, water vapor, carbon and momentum within and above canopy using third-order closure equations. It alsoestimates turbulent profiles of velocity, temperature, humidity within and above canopy. The ACASA model estimates CO_2 fluxes using a combination of Ball-Berry and Farquhar equations. In addition, the effects of water stress on stomata, transpiration and CO_2 assimilation are considered. The model was mainly used over dense canopies (Pyles et al. 2000, 2003) in the past, so the aim of this work was to test the ACASA model over a sparse canopy for estimating mass and energy fluxes, comparing model output with field measurements taken over a vineyard located in Montalcino, Tuscany, Italy.
机译:公认需要改进能模拟陆地生态系统和大气之间质量和能量通量的陆地表面模型。特别是,地方和区域规模的长期土地规划策略需要更好地了解农业生态系统交换二氧化碳和水的能力。用于通量建模的更复杂的模型之一是高级冠层-大气-土壤算法(ACASA)模型(Pyles等,2000),它提供了微观和区域尺度的通量。 ACASA模型可以表征能量和碳通量。它是一个高阶封闭模型,用于使用三阶封闭方程估算顶盖内外的热,水蒸汽,碳和动量的通量和分布。它还可以估算顶篷内外的速度,温度,湿度的湍流曲线。 ACASA模型使用Ball-Berry和Farquhar方程的组合估算CO_2通量。另外,考虑了水分胁迫对气孔,蒸腾作用和CO_2同化的影响。该模型过去主要用于密集的树冠上(Pyles et al。2000,2003),因此该工作的目的是在稀疏树冠上测试ACASA模型以估计质量和能量通量,将模型输出与现场测量结果进行比较接管位于意大利托斯卡纳蒙塔尔奇诺的葡萄园。

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