首页> 外文期刊>Journal of Hydrology >A study of field-scale soil moisture variability using the COsmic-ray Soil Moisture Observing System (COSMOS) at IITM Pune site
【24h】

A study of field-scale soil moisture variability using the COsmic-ray Soil Moisture Observing System (COSMOS) at IITM Pune site

机译:IITM浦枪网站宇宙射线水分观测系统(COSMOS)的现场规模土壤水分差异研究

获取原文
获取原文并翻译 | 示例
           

摘要

This study presents an analysis of daily field-scale soil-moisture (SM) variations, measured using the COsmic-ray Soil Moisture Observing System (COSMOS), over a tropical monsoon site (IITM, Pune) in India, for the period 2017-2020. Being located in the core zone of the Indian summer monsoon, the daily field-scale SM observations at COSMOS-IITM provide an unique opportunity to understand the SM response to monsoon precipitation variations on sub-seasonal, seasonal and interannual time-scales. In addition to the COSMOS-IITM observations, we also evaluated SM variations over this location using satellite, reanalysis and model products for the same period. An important result from our analysis reveals the presence of biweekly (time-scale similar to 10-20 days) and low-frequency intra-seasonal (time-scale similar to 30-60 days) variations in the field-scale SM, which are linked to the dominant modes of Indian summer monsoon subseasonal variability. In particular, we find a pronounced enhancement of the low-frequency signal of SM variations during the 2019 monsoon which was characterized by abnormally excess precipitation and prolongation of rains well beyond the summer monsoon season, in contrast to 2018 monsoon. Moreover, this study highlights a longer persistence of SM memory time-scale (about 60 days) during 2019 as compared to 2017, 2018 and 2020. The validation of coarser resolution data sets revealed that GLDAS and ERA5 reasonably capture a range of observed field-scale SM variabilities over COSMOS-IITM site.
机译:本研究分析了2017-2020年期间,在印度热带季风地区(IITM,浦那),使用宇宙射线土壤水分观测系统(COSMOS)测量的现场土壤水分(SM)日变化。COSMOS-IITM的逐日野外尺度SM观测位于印度夏季风的核心区,为了解SM对季风降水变化在亚季节、季节和年际时间尺度上的响应提供了独特的机会。除了COSMOS-IITM观测,我们还使用卫星、再分析和同期模型产品评估了该位置的SM变化。我们分析的一个重要结果揭示了SM场尺度存在双周(时间尺度类似于10-20天)和低频季节内(时间尺度类似于30-60天)变化,这与印度夏季风次季节变化的主导模式有关。特别是,我们发现2019年季风期间SM变化的低频信号显著增强,与2018年季风相比,2019年季风的特征是异常过量降水和降雨延长,远远超过了夏季季风季节。此外,与2017年、2018年和2020年相比,这项研究强调了2019年SM记忆时间尺度的持续时间更长(约60天)。对粗分辨率数据集的验证表明,GLDAS和ERA5合理地捕获了COSMOS-IITM站点上观测到的一系列场尺度SM变量。

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