首页> 外文期刊>Agricultural Systems >CASIMOD'N: an agro-hydrological distributed model of catchment-scale nitrogen dynamics integrating farming system decisions.
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CASIMOD'N: an agro-hydrological distributed model of catchment-scale nitrogen dynamics integrating farming system decisions.

机译:CASIMOD'N:集水规模氮动态的农业水文学分布式模型,结合了耕作制度的决策。

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This work presents the new integrative model CASIMOD'N (Catchment and Agricultural Systems Integrated MODel for Nitrogen), which assesses effects of farming systems on nitrogen (N) dynamics at the catchment level. Its main innovation is the consideration of the level of the farming system through production strategies, farmer decisions and the expression of decisions as management practices, along with the link between these farming systems, their practices and water pollution. CASIMOD'N integrates farming systems at the farm level and N transfers and transformations at the field, farm and catchment levels. It was built by adapting and combining three models: the catchment-scale biophysical model TNT2 and two farm-scale models, TOURNESOL and FUMIGENE, for the allocation of land use and manure, respectively. The intrinsic logic behind farming system design and function was represented by ensuring agreement between livestock-feeding and manure-management strategies under specific farm constraints (land fragmentation, distance between fields and farmyards) and agronomic rules. The model is able to simulate management practices (crop, manure and mineral fertiliser allocation). An assessment of the farming system modelling was performed by comparing the management practices simulated with CASIMOD'N with (i) observed data from a livestock-oriented catchment and (ii) a reference dataset of management practices reconstructed with a Markov chain and Knapsack-based algorithm. Then, the spatial distributions of the main N fluxes at the sub-catchment scale simulated with CASIMOD'N and based on the reconstructed management practices are discussed. Simulations of the two options had few differences in spatial distribution of the main N compartments, organic and mineral fertilisation and N flux at the outlets both at catchment and sub-catchment levels. However, CASIMOD'N was more accurate for simulating farming systems than the reconstructed reference dataset of management practices. This suggests that CASIMOD'N can be used to conceive, implement and assess prospective scenarios involving farming system redesign.
机译:这项工作提出了一种新的综合模型CASIMOD'N(集水区和农业系统氮综合MODel),该模型可以评估集水区水平上耕作制度对氮(N)动态的影响。它的主要创新是通过生产策略,农民决策以及将决策表达为管理实践来考虑耕作制度的水平,以及这些耕作制度,其实践与水污染之间的联系。 CASIMOD'N在农场一级集成了耕作系统,在田间,农场和集水区集成了N的转移和转化。它是通过改编和组合三个模型而建立的:流域规模的生物物理模型TNT2和两个农场规模的模型TOURNESOL和FUMIGENE,分别用于土地利用和肥料分配。耕作制度设计和功能背后的内在逻辑是通过确保在特定的农场约束(土地分割,田地与农地之间的距离)和农艺规则下的牲畜饲养和粪便管理战略之间达成一致来体现的。该模型能够模拟管理实践(作物,肥料和矿物肥料的分配)。通过将CASIMOD'N模拟的管理实践与(i)以牲畜为导向的流域的观测数据进行比较,以及(ii)使用Markov链和基于Knapsack重构的管理实践参考数据集,对耕作系统模型进行了评估算法。然后,以CASIMOD'N为基础,基于重构的管理方法,讨论了亚流域尺度上主要N通量的空间分布。两种方案的模拟在主要N区的空间分布,集水区和次集水位的出口处的有机氮和矿物肥以及氮通量方面几乎没有差异。但是,CASIMOD'N在模拟农业系统方面比重构的管理实践参考数据集更为准确。这表明CASIMOD'N可用于构思,实施和评估涉及农业系统重新设计的预期方案。

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