...
首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >MARMIT: A multilayer radiative transfer model of soil reflectance to estimate surface soil moisture content in the solar domain (400-2500 nm)
【24h】

MARMIT: A multilayer radiative transfer model of soil reflectance to estimate surface soil moisture content in the solar domain (400-2500 nm)

机译:Marmit:土壤反射率的多层辐射转移模型,以估算太阳能域的表面土壤水分含量(400-2500nm)

获取原文
获取原文并翻译 | 示例
           

摘要

Surface soil moisture content (SMC) is known to impact soil reflectance at all wavelengths of the solar spectrum. As a consequence, many semi-empirical methods aim at inferring SMC from soil reflectance, but very few rely on physically-based models. This article presents a multilayer radiative transfer model of soil reflectance called MARMIT (multilayer radiative transfer model of soil reflectance) as a function of SMC given on a mass basis and a method called MARMITforSMC to estimate it from soil reflectance spectra. This model depicts a wet soil as a dry soil covered with a thin film of water. It is used to assess SMC over seven independent laboratory datasets gathered from the literature. A learning phase is required to link the thickness of the water film with the SMC. For that purpose, a sigmoid function, the parameters of which are related to soil physical and chemical properties such as porosity, grain size and mineralogy composition, is fitted. SMC can be inferred with good accuracy (RMSE approximate to 3%) if the learning step is applied soil by soil. The link between SMC and water thickness actually depends on soil texture and chemical composition. If the soils are divided into classes and if the learning phase is applied to a class, the RMSE slightly increases up to 5%. Finally, MARMITforSMC provides lower RMSE than any other existing semi-empirical or physically-based method.
机译:已知表面土壤水分含量(SMC)在太阳光谱的所有波长下冲击土壤反射率。因此,许多半实证方法旨在推断从土壤反射率推断出SMC,但很少依赖于基于物理的模型。本文介绍了Marmit(土壤反射率多层辐射转移模型的土壤反射率的多层辐射转移模型,作为大规模基础上的SMC的功能,以及叫做MarmitforsMC的方法,从土壤反射光谱估计其。该模型描绘了湿土,作为覆盖着薄膜的干燥土壤。它用于评估从文献中收集的七个独立实验室数据集中的SMC。需要一种学习阶段来将水膜的厚度与SMC联系起来。为此目的,拟合函数,其参数与土壤物理和化学性质如孔隙率,晶粒尺寸和矿物组合物有关。如果学习步骤由土壤施加土壤,则可以以良好的精度(RMSE近似为3%)推断出SMC。 SMC和水厚度之间的联系实际上取决于土壤质地和化学成分。如果土壤分为类,并且学习阶段应用于类,则RMSE略有增加至5%。最后,MarmitforSMC提供比任何其他现有的半经验或物理基于方法更低的RMSE。

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