首页> 外文期刊>Hydrology and Earth System Sciences >A global Budyko model to partition evaporation into interception and transpiration
【24h】

A global Budyko model to partition evaporation into interception and transpiration

机译:全球Budyko模型将蒸发分配到拦截和蒸腾

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Evaporation is a crucial flux in the hydrological cycle and links the water and energy balance of a catchment. The Budyko framework is often used to provide a first-order estimate of evaporation, as it is a straightforward model with only rainfall and potential evaporation as required input. Many researchers have improved the Budyko framework by including more physics and catchment characteristics in the original equation. However, the parameterization of these improved Budyko models is not so straightforward, is data demanding, and requires local knowledge that is difficult to obtain at the global scale. In this paper we present an improvement of the previously presented Gerrits' model ("Analytical derivation of the Budyko curve based on rainfall characteristics and a simple evaporation model" in Gerrits et al., 2009 WRR), whereby total evaporation is calculated on the basis of simple interception and transpiration thresholds in combination with measurable parameters like rainfall dynamics and storage availability from remotely sensed data sources. While Gerrits' model was previously investigated for 10 catchments with different climate conditions and where some parameters were assumed to be constant, in this study we applied the model at the global scale and fed the model with remotely sensed input data. The output of the model has been compared to two complex land-surface models, S STEAM and GLEAM, as well as the database of Landflux-EVAL. Our results show that total evaporation estimated by Gerrits' model is in good agreement with Landflux-EVAL, STEAM, and GLEAM. The results also show that Gerrits' model underestimates interception in comparison to STEAM and overestimates it in comparison to GLEAM, whereas the opposite is found for transpiration. Errors in interception can partly be explained by differences in the definition of interception that successively introduce errors in the calculation of transpiration. Relating to the Budyko framework, the model shows a reasonable performance for the estimation of total evaporation. The results also found a unimodal distribution of the transpiration to precipitation fraction (E-t/P), indicating that both increasing and decreasing aridity will result in a decline in the fraction of transpired rainfall by plants for growth and metabolism.
机译:蒸发是水文循环中的一个关键的助焊剂,并将水分和能量平衡联系在一起。 Budyko框架通常用于提供蒸发的一阶估计,因为它是只有降雨和潜在的蒸发的直接模型,如所需的输入。许多研究人员通过包括原始方程中的更多物理和集水特征,改善了Budyko框架。然而,这些改进的Budyko模型的参数化不是那么简单,是数据要求,并且需要在全球范围内难以获得的本地知识。在本文中,我们提出了先前所呈现的GERRITS模型的改进(基于降雨特征的Budyko曲线的分析推导,并且在GERRITS等,2009 WRR),由此在基础上计算总蒸发简单的拦截和蒸腾阈值与来自远程感测数据源的降雨动态和存储可用性等可测量的参数组合。虽然先前GERRITS模型进行了调查的10个集水区,但在这项研究中假设某些参数是常数的影响,我们在全球范围内应用了模型,并用远程感测的输入数据向模型提供联系。该模型的输出已经与两个复杂的陆地模型,S蒸汽和闪光进行了比较,以及Landflux-eval的数据库。我们的研究结果表明,GERRITS模型估计的总蒸发与Landflux-equ,Steam和Gleam良好。结果还表明,与蒸汽相比,GERRITS模型与蒸汽相比低估了拦截,与闪光相比,其高估了它,而发现相反的是蒸腾。拦截中的错误可以部分地解释拦截的定义的差异,在蒸腾的计算中连续引入错误。与Budyko框架有关,该模型显示了估计总蒸发的合理性能。结果还发现蒸腾率为沉淀级分(E-T / P)的单峰分布,表明,增长和降低的干燥将导致植物生长和新陈代谢的植物分数下降。

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