首页> 外文期刊>Journal of Hydrology >Large scale measurements of soil moisture for validation of remotely sensed data: Georgia soil moisture experiment of 2003
【24h】

Large scale measurements of soil moisture for validation of remotely sensed data: Georgia soil moisture experiment of 2003

机译:大规模测量土壤湿度以验证遥感数据:2003年乔治亚州土壤湿度实验

获取原文
获取原文并翻译 | 示例
           

摘要

A series of soil moisture experiments were conducted in 2003 (SMEX03) to develop enhanced datasets necessary to improve spatiotemporal characterization of soil moisture and to enhance satellite-based retrievals. One component of this research was conducted in South Central Georgia of the US, from June 17th to July 21st (SMEX03 GA). This study analyzes measurements of soil moisture and temperature collected during SNEX03 GA. A network of in situ soil moisture measurement devices, established to provide validation data for the satellite collections and for long-term estimation of soil moisture conditions throughout the region, provided continuous measurements at 19 sites. Additional soil moisture and temperature validation data were collected daily from 49 field sites. These sites represented a diversity of land covers including forest, cotton, peanut, and pasture. Precipitation that occurred prior to June 22nd and from June 29th through July 2nd produced drying conditions from June 23rd to June 28th and gradual wetting from June 29th through July 2nd. Soil moisture in the top 0-1 cm of the soil was found to be more responsive to precipitation and to have greater variability than soil moisture at the 0-3 or 3-6 cm layers. Within different land covers, soil moisture followed the same trends, but varied with land use. Pasture sites were consistently the wettest while row-crop sites were normally the driest. Good agreement was observed between soil moisture measurements collected with the in situ network and the 49 SMEX sites. For the study period, soil moisture across the entire 50 kin by 75 km region and five of the six 25 km by 25 km EASE-Grids demonstrated time stable characteristics. Time stability analysis and statistical tests demonstrated the in situ stations had a small dry bias as compared to the SNMX03 GA measurements. These results indicate that the in situ network will be a good resource for long-term calibration of remotely sensed soil moisture and provide a new and unique source for future satellite product validation. (c) 2005 Elsevier B.V. All rights reserved.
机译:2003年进行了一系列土壤水分实验(SMEX03),以开发增强的数据集,以改善土壤水分的时空特征并增强基于卫星的检索。该研究的一个组成部分是于6月17日至7月21日在美国乔治亚州中南部(SMEX03 GA)进行的。这项研究分析了SNEX03 GA期间收集的土壤水分和温度的测量值。建立现场土壤水分测量设备网络以提供卫星数据的验证数据以及对整个地区土壤水分状况的长期估计,并在19个地点进行了连续测量。每天从49个田间地点收集其他土壤水分和温度验证数据。这些地点代表了各种各样的土地覆盖,包括森林,棉花,花生和牧场。 6月22日之前以及6月29日至7月2日发生的降水产生了6月23日至6月28日的干燥条件,以及6月29日至7月2日的逐渐湿润。与0-3或3-6 cm层的土壤水分相比,土壤顶部0-1 cm的土壤水分对降水的响应更大,并且变异性更大。在不同的土地覆盖范围内,土壤水分遵循相同的趋势,但随土地利用而变化。牧场始终是最湿的,而农作物通常是最干燥的。用原位网络收集的土壤水分测量结果与49个SMEX站点之间观察到了很好的一致性。在研究期间,整个50 kin x 75 km区域和六个25 km x 25 km EASE网格中的五个土壤水分表现出时间稳定性。时间稳定性分析和统计测试表明,与SNMX03 GA测量值相比,原位测站的干偏小。这些结果表明,原位网络将是长期校准遥感土壤水分的良好资源,并为未来的卫星产品验证提供了新的独特来源。 (c)2005 Elsevier B.V.保留所有权利。

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