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首页> 外文期刊>Journal of Hydrology >A spatially explicit hydro-ecological modeling framework (BEPS-TerrainLab V20)
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A spatially explicit hydro-ecological modeling framework (BEPS-TerrainLab V20)

机译:空间明确的水生态模型框架(BEPS-TerrainLab V20)

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A spatially explicit, process-based hydro-ecological model, BEPS-TerrainLab V2.0, was developed to improve the representation of ecophysiological, hydro-ecological and biogeochemical processes of boreal ecosystems in a tightly coupled manner. Several processes unique to boreal ecosystems were imple_mented including the sub-surface lateral water fluxes, stratification of vegetation into distinct layers for explicit ecophysiological representation, inclusion of novel spatial upscaling strategies and biogeochemical processes. To account for preferential water fluxes common in humid boreal ecosystems, a novel scheme was introduced based on laboratory analyses. Leaf-scale ecophysiological processes were upscaled to canopy-scale by explicitly considering leaf physiological conditions as affected by light and water stress. The modified model was tested with 2 years of continuous measurements taken at the Eastern Old Black Spruce Site of the Fluxnet-Canada Research Network located in a humid boreal watershed in eastern Canada. Comparison of the simulated and measured ET, water-table depth (WTD), volumetric soil water content (VSWC) and gross primary productivity (GPP) revealed that BEPS-TerrainLab V2.0 simulates hydro-ecological processes with reasonable accuracy. The model was able to explain 83% of the ET, 92% of the GPP variability and 72% of the WM dynamics. The model suggests that in humid ecosystems such as eastern North American boreal watersheds, topographically driven sub-surface baseflow is the main mechanism of soil water partitioning which significantly affects the local-scale hydrological conditions.
机译:开发了基于空间的,基于过程的水生态模型BEPS-TerrainLab V2.0,以紧密耦合的方式改善了北方生态系统的生态生理,水生态和生物地球化学过程的表示形式。实施了北方生态系统特有的几个过程,包括地下横向水通量,将植被分层成不同的层以明确表现出生态生理学特征,纳入新颖的空间放大策略和生物地球化学过程。为了解决潮湿的北方生态系统中常见的优先水通量问题,基于实验室分析提出了一种新的方案。通过明确考虑受光和水分胁迫影响的叶片生理条件,将叶片尺度的生态生理过程提升到冠层尺度。修改后的模型在Fluxnet-Canada研究网络的东部老黑云杉站点进行了2年连续测量,该站点位于加拿大东部潮湿的北部集水区。对模拟和测量的ET,地下水位深度(WTD),土壤体积水含量(VSWC)和总初级生产力(GPP)进行比较后,发现BEPS-TerrainLab V2.0以合理的精度模拟了水生态过程。该模型能够解释83%的ET,92%的GPP变异性和72%的WM动态。该模型表明,在潮湿的生态系统(如北美东部北方流域)中,地形驱动的地下基流是土壤水分配的主要机制,这会显着影响局部尺度的水文条件。

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