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首页> 外文期刊>Biogeosciences >Coupling land surface and crop growth models for predicting evapotranspiration and carbon exchange in wheat-maize rotation croplands
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Coupling land surface and crop growth models for predicting evapotranspiration and carbon exchange in wheat-maize rotation croplands

机译:结合土地表面和作物生长模型预测小麦-玉米轮作农田的蒸散量和碳交换

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摘要

The North China Plain is one of the key crop-producing regions in China. However, water resources in the area are limited. Accurate modeling of water consumption and crop production in response to the changing environment is important. To describe the two-way interactions among climate, irrigation, and crop growth better, the modified crop phenology and physiology scheme from the SiBcrop model was coupled with the second version of the Simple Biosphere model (SiB2) to simulate crop phenology, crop production, and evapotranspiration of winter wheat and summer maize, which are two of the main crops in the region. In the coupled model, the leaf area index (LAI) produced by the crop phenology and physiology scheme was used in estimating sub-hourly energy and carbon fluxes. Observations obtained from two typical eddy covariance sites located in this region were used to validate the model. The coupled model was able to accurately simulate carbon and energy fluxes, soil water content, biomass carbon, and crop yield, especially for latent heat flux and carbon flux. The LAI was also well simulated by the model. Therefore, the coupled model is capable of assessing the responses of water resources and crop production to the changes of future climate and irrigation schedules of this region.
机译:华北平原是中国重要的农作物产区之一。但是,该地区的水资源有限。响应不断变化的环境,对耗水量和农作物产量进行准确建模非常重要。为了更好地描述气候,灌溉和作物生长之间的双向相互作用,将SiBcrop模型的改良作物物候和生理方案与第二版简单生物圈模型(SiB2)结合使用,以模拟作物物候,作物产量,冬小麦和夏玉米的蒸散量,这是该地区的两种主要农作物。在耦合模型中,通过作物物候和生理方案产生的叶面积指数(LAI)被用于估计亚小时能量和碳通量。从位于该区域的两个典型涡动协方差站点获得的观测值用于验证模型。耦合模型能够准确地模拟碳通量和能量通量,土壤水分,生物质碳和农作物产量,特别是对于潜热通量和碳通量。该模型还很好地模拟了LAI。因此,耦合模型能够评估水资源和农作物产量对该地区未来气候和灌溉计划变化的响应。

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