...
首页> 外文期刊>Journal of Hydrology >Evaluating three evapotranspiration estimates from model of different complexity over China using the ILAMB benchmarking system
【24h】

Evaluating three evapotranspiration estimates from model of different complexity over China using the ILAMB benchmarking system

机译:使用ILAMB基准系统评估中国不同复杂度模型的3个蒸散估计值

获取原文
获取原文并翻译 | 示例

摘要

Land surface models range in complexity of terrestrial evapotranspiration, yet it is unknown how model complexity translates to accuracy of modeled evapotranspiration estimates. Here, we use the International Land Model Benchmarking system to assess ET estimates from three models of varying complexity driven by the same forcing datasets: an earth system model, a terrestrial biosphere model, and a stand-alone ET model. The performance assessment includes both temporal and spatial evaluation, and different plant functional types across China. Our results indicate that the most complex model, an earth system model, performed best against the benchmarking datasets and metrics. Terrestrial biosphere model performed best in simulating inter-annual variability of ET, while earth system model performed best in simulating the seasonal cycle. The more complex models (earth system model and terrestrial biosphere model) perform better in forest, shrub and crop ecosystems,while the simpler model (stand-alone ET model) perform better in grass ecosystems. Our study demonstrates the impact of model complexity on ET estimates and highlights directions for future ET model improvements.
机译:陆地表面模型的陆地蒸散复杂度各不相同,但尚不清楚模型复杂性如何转化为模拟蒸散估计的准确性。在这里,我们使用国际陆地模型基准系统来评估由相同强迫数据集驱动的三个不同复杂度的模型的 ET 估计:地球系统模型、陆地生物圈模型和独立 ET 模型。绩效评估包括时间和空间评估,以及中国各地不同的植物功能类型。我们的结果表明,最复杂的模型,即地球系统模型,在基准数据集和指标方面表现最佳。陆地生物圈模式在模拟ET年际变化方面表现最好,而地球系统模式在模拟季节周期方面表现最好。更复杂的模型(地球系统模型和陆地生物圈模型)在森林、灌木和作物生态系统中表现更好,而更简单的模型(独立ET模型)在草生态系统中表现更好。我们的研究证明了模型复杂性对 ET 估计的影响,并强调了未来 ET 模型改进的方向。

著录项

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