首页> 外文期刊>Boundary-layer Meteorology >Sensitivity Analysis and Investigation of the Behaviour of the UTOPIA Land-Surface Process Model: A Case Study for Vineyards in Northern Italy
【24h】

Sensitivity Analysis and Investigation of the Behaviour of the UTOPIA Land-Surface Process Model: A Case Study for Vineyards in Northern Italy

机译:UTOPIA土地表面过程模型的行为敏感性分析和调查:以意大利北部葡萄园为例

获取原文
获取原文并翻译 | 示例
           

摘要

We used sensitivity-analysis techniques to investigate the behaviour of the land-surface model UTOPIA while simulating the micrometeorology of a typical northern Italy vineyard (Vitis vinifera L.) under average climatic conditions. Sensitivity-analysis experiments were performed by sampling the vegetation parameter hyperspace using the Morris method and quantifying the parameter relevance across a wide range of soil conditions. This method was used since it proved its suitability for models with high computational time or with a large number of parameters, in a variety of studies performed on different types of biophysical models. The impact of input variability was estimated on reference model variables selected among energy (e.g. net radiation, sensible and latent heat fluxes) and hydrological (e.g. soilmoisture, surface runoff, drainage) budget components. Maximum vegetation cover and maximum leaf area index were ranked as the most relevant parameters, with sensitivity indices exceeding the remaining parameters by about one order of magnitude. Soil variability had a high impact on the relevance of most of the vegetation parameters: coefficients of variation calculated on the sensitivity indices estimated for the different soils often exceeded 100 %. The only exceptions were represented by maximum vegetation cover and maximum leaf area index, which showed a low variability in sensitivity indices while changing soil type, and confirmed their key role in affecting model results.
机译:我们使用敏感性分析技术来研究陆地表面模型UTOPIA的行为,同时模拟平均气候条件下意大利北部典型葡萄园(Vitis vinifera L.)的微气象。通过使用Morris方法对植被参数超空间进行采样并在各种土壤条件下量化参数相关性,进行了敏感性分析实验。之所以使用此方法,是因为在针对不同类型的生物物理模型进行的各种研究中证明了其适用于具有高计算时间或大量参数的模型。估计了输入变异性对参考模型变量的影响,这些参考模型变量选自能量(例如净辐射,显热和潜热通量)和水文(例如土壤水分,地表径流,排水)预算组成部分。最大植被覆盖率和最大叶面积指数被列为最相关的参数,敏感性指数比其余参数高出约一个数量级。土壤多变性对大多数植被参数的相关性影响很大:根据对不同土壤的敏感性指数估算得出的变异系数通常超过100%。唯一的例外是最大的植被覆盖率和最大的叶面积指数,这表明在改变土壤类型时敏感性指数的变异性较低,并证实了它们在影响模型结果中的关键作用。

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