...
首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Influence of forest cover fraction on L-band soil moisture retrievals from heterogeneous pixels using multi-angular observations
【24h】

Influence of forest cover fraction on L-band soil moisture retrievals from heterogeneous pixels using multi-angular observations

机译:森林覆盖率对异质像素L波段土壤水分反演的多角度影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Airborne L-band data from the Australian National Airborne Field Experiment 2005 (NAFE '05) field campaign were used to investigate the influence of fractional forest cover on soil moisture retrievals from heterogeneous (grass/forest) pixels. This study is, to our knowledge, the first to use experimental data on this subject and was done in view of the SMOS mission, in order to contribute to calibration/validation studies and the analysis of heterogeneous surfaces. Because the multi-angle observations were contained in swaths, swaths were used instead of pixels as the basic surface unit in this study. Simultaneous retrievals of soil moisture (SM) and vegetation optical depth (τNAD) were undertaken by inversion of the L-MEB zeroorder radiative transfer model. This was done for two different retrieval configurations, the first consisting of swath-effective values of SM and τNAD and the second consisting of values of SM and τNAD for the nonforested (i.e. grass) fraction of the swath, with forest emission known from forward modelling. Model inputs for non-retrieved parameters were either default values taken from the literature or site- and time-specific values obtained from observations of nearby homogeneous swaths gathered during the same flight. The main focus of this study was on retrieval behaviour for various soil moisture conditions and forest fractions. Area-averaged retrieval results were generally very reasonable for both retrieval configurations. When retrieving swath-effective values of SM and τNAD, τNAD showed an increased overestimation with increased forest fraction. Highest retrieved values of SM were found at intermediate values of forest fraction. The results show the difficulty in flagging upper limits of pixel forest fraction during soil moisture retrievals, besides the fact that erroneous parameter values can lead to high errors in retrieved SM, especially in wet conditions. This study is the first to give a realistic idea of the errors and uncertainties involved in soil moisture retrievals from partly forested swaths, and as such will contribute to a better understanding of SMOS calibration/validation issues.
机译:来自澳大利亚国家空降野外实验2005(NAFE '05)的野战L波段数据用于调查森林覆盖率对异质(草/林)像素取回土壤水分的影响。据我们所知,这项研究是首次使用有关该主题的实验数据,并且是根据SMOS任务完成的,旨在为校准/验证研究和异质表面分析做出贡献。由于多角度观测值包含在条带中,因此在本研究中使用条带代替像素作为基本表面单位。通过反演L-MEB零级辐射传递模型,可以同时获取土壤水分(SM)和植被光学深度(τNAD)。这是针对两种不同的检索配置完成的,第一种包括条带的非有效(即草)部分的有效条带有效值SM和τNAD,第二种包括SM和τNAD的值,通过正向建模已知森林排放。未检索到的参数的模型输入是从文献中获取的默认值,或者是从同一次飞行中收集到的附近均一带的观测值获得的特定地点和特定时间的值。这项研究的主要重点是针对各种土壤湿度条件和森林分数的恢复行为。对于两种检索配置,区域平均检索结果通常非常合理。检索SM和τNAD的有效幅值时,τNAD显示高估率随森林分数的增加而增加。 SM的最高检索值位于森林分数的中间值。结果表明,在土壤水分取回过程中,很难标出像素森林分数的上限,此外,错误的参数值还可能导致取回的SM出现较大误差,尤其是在潮湿条件下。这项研究是第一个给出从部分森林地带中获取土壤水分的误差和不确定性的现实想法的方法,因此将有助于更好地理解SMOS校准/验证问题。

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