首页> 外文期刊>Geoscientific Model Development >The SPAtial EFficiency metric (SPAEF): multiple-component evaluation of spatial patterns for optimization of hydrological models
【24h】

The SPAtial EFficiency metric (SPAEF): multiple-component evaluation of spatial patterns for optimization of hydrological models

机译:空间效率指标(SPAEF):对空间格局进行多部分评估以优化水文模型

获取原文
           

摘要

The process of model evaluation is not only an integral part of model development and calibration but also of paramount importance when communicating modelling results to the scientific community and stakeholders. The modelling community has a large and well-tested toolbox of metrics to evaluate temporal model performance. In contrast, spatial performance evaluation does not correspond to the grand availability of spatial observations readily available and to the sophisticate model codes simulating the spatial variability of complex hydrological processes. This study makes a contribution towards advancing spatial-pattern-oriented model calibration by rigorously testing a multiple-component performance metric. The promoted SPAtial EFficiency (SPAEF) metric reflects three equally weighted components: correlation, coefficient of variation and histogram overlap. This multiple-component approach is found to be advantageous in order to achieve the complex task of comparing spatial patterns. SPAEF, its three components individually and two alternative spatial performance metrics, i.e. connectivity analysis and fractions skill score, are applied in a spatial-pattern-oriented model calibration of a catchment model in Denmark. Results suggest the importance of multiple-component metrics because stand-alone metrics tend to fail to provide holistic pattern information. The three SPAEF components are found to be independent, which allows them to complement each other in a meaningful way. In order to optimally exploit spatial observations made available by remote sensing platforms, this study suggests applying bias insensitive metrics which further allow for a comparison of variables which are related but may differ in unit. This study applies SPAEF in the hydrological context using the mesoscale Hydrologic Model (mHM; version 5.8), but we see great potential across disciplines related to spatially distributed earth system modelling.
机译:模型评估过程不仅是模型开发和校准的组成部分,而且在将建模结果传达给科学界和利益相关者时也至关重要。建模社区拥有一个经过大量测试的度量工具箱,可以评估时间模型的性能。相比之下,空间性能评估并不对应于容易获得的空间观测的丰富可用性,也不对应于模拟复杂水文过程的空间变异性的复杂模型代码。这项研究通过严格测试多组件性能指标,为推进面向空间模式的模型校准做出了贡献。提升的空间效率(SPAEF)指标反映了三个权重相等的成分:相关性,变异系数和直方图重叠。为了实现比较空间图案的复杂任务,发现这种多分量方法是有利的。 SPAEF分别由其三个组成部分和两个替代的空间绩效指标(即连通性分析和分数技能得分)应用于丹麦集水区模型的面向空间模式的模型校准中。结果表明多组件指标的重要性,因为独立指标往往无法提供整体模式信息。发现这三个SPAEF组件是独立的,这使它们可以有意义的方式相互补充。为了最佳地利用遥感平台提供的空间观测结果,这项研究建议应用不敏感的偏差度量标准,该度量标准还可以比较相关但在单位上可能不同的变量。这项研究使用中尺度水文模型(mHM;版本5.8)在水文环境中应用SPAEF,但是我们发现与空间分布地球系统建模相关的各个学科都有巨大潜力。

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