首页> 外文期刊>Agricultural and Forest Meteorology >Coupling the land surface model Noah-MP with the generic crop growth model Gecros: Model description, calibration and validation
【24h】

Coupling the land surface model Noah-MP with the generic crop growth model Gecros: Model description, calibration and validation

机译:耦合土地表面模型Noah-MP与普通作物生长模型Gecros:模型描述,校准和验证

获取原文
获取原文并翻译 | 示例
           

摘要

Interactions between vegetation and atmosphere have a large impact on weather and climate. During the last decade, enormous efforts have been made to improve the representation of vegetation dynamics in land surface models (LSM). The present study extends the LSM Noah-MP by the dynamic crop growth model Gecros that enables simulating the development of crop stands in a weather-driven manner. This extension is a pre-requisite to simulate two-way climate-crop interactions in climate projections. Based on a comprehensive five-year dataset on energy- and water fluxes, and soil water and crop data from two different climate regions of southwest Germany, we adapted the crop growth model Gecros, integrated it with Noah-MP, calibrated the coupled model for winter wheat and maize and tested its robustness in multiple-year validation runs against independent measurements. This sound data set yielded a robust parameterization that performed well both in calibration and in validation runs over in total 16 seasons. Due to pronounced differences in phenology among maize cultivars, wheat simulations were better than maize simulations. The simulated dynamics in leaf area index of wheat and maize differed largely from the one used in standard Noah-MP simulations. The new model yielded pronounced differences in the partitioning of evapotranspiration into transpiration and soil evaporation. The added value of the improved description of vegetation dynamics needs to be evaluated in high-resolution coupled crop-climate simulations in future.
机译:植被和大气之间的相互作用对天气和气候产生了很大影响。在过去十年中,已经努力改善陆地表面模型(LSM)中植被动力学的代表。目前的研究通过动态作物生长模型Gecros延伸了LSM NoAh-MP,使得能够以天气驱动的方式模拟作物的发展。该延伸是模拟气候预测中双向气候作物相互作用的先决条件。基于全面的五年数据集,与德国西南两种不同气候区的土壤水分和农作物数据,我们改编了作物生长模型Gecros,与Noah-MP集成,校准了耦合模型冬小麦和玉米并测试其在多年验证中的稳健性反对独立的测量。该声音数据集产生了一个强大的参数化,在校准和验证中均在总共16个赛季中运行良好。由于玉米品种中候选的明显差异,小麦模拟优于玉米模拟。小麦和玉米叶面积指数中的模拟动力学主要来自标准NoAh-MP模拟中使用的。新模型在蒸发蒸腾蒸腾和土壤蒸发方面产生了明显的差异。需要在将来的高分辨率耦合作物气候模拟中评估改进的植被动态描述的附加值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号