中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Correction of systematic model forcing bias of CLM using assimilation of cosmic-ray Neutrons and land surface temperature: A study in the Heihe Catchment, China (EI)

文献类型:期刊论文

作者Han X.; Franssen H. J. H.; Rosolem R.; Jin R.; Li X.; Vereecken H.
刊名Hydrology and Earth System Sciences
出版日期2015
卷号19期号:1页码:615-629
英文摘要The recent development of the non-invasive cosmic-ray soil moisture sensing technique fills the gap between point-scale soil moisture measurements and regional-scale soil moisture measurements by remote sensing. A cosmic-ray probe measures soil moisture for a footprint with a diameter of 600 m (at sea level) and with an effective measurement depth between 12 and 76 cm, depending on the soil humidity. In this study, it was tested whether neutron counts also allow correcting for a systematic error in the model forcings. A lack of water management data often causes systematic input errors to land surface models. Here, the assimilation procedure was tested for an irrigated corn field (Heihe Watershed Allied Telemetry Experimental Research-HiWATER, 2012) where no irrigation data were available as model input although for the area a significant amount of water was irrigated. In the study, the measured cosmic-ray neutron counts and Moderate-Resolution Imaging Spectroradiometer (MODIS) land surface temperature (LST) products were jointly assimilated into the Community Land Model (CLM) with the local ensemble transform Kalman filter. Different data assimilation scenarios were evaluated, with assimilation of LST and/or cosmic-ray neutron counts, and possibly parameter estimation of leaf area index (LAI). The results show that the direct assimilation of cosmic-ray neutron counts can improve the soil moisture and evapotranspiration (ET) estimation significantly, correcting for lack of information on irrigation amounts. The joint assimilation of neutron counts and LST could improve further the ET estimation, but the information content of neutron counts exceeded the one of LST. Additional improvement was achieved by calibrating LAI, which after calibration was also closer to independent field measurements. It was concluded that assimilation of neutron counts was useful for ET and soil moisture estimation even if the model has a systematic bias like neglecting irrigation. However, also the assimilation of LST helped to correct the systematic model bias introduced by neglecting irrigation and LST could be used to update soil moisture with state augmentation. 2015 Author(s).
收录类别EI
语种英语
源URL[http://ir.casnw.net/handle/362004/27155]  
专题寒区旱区环境与工程研究所_中科院寒区旱区环境与工程研究所(未分类)_期刊论文
推荐引用方式
GB/T 7714
Han X.,Franssen H. J. H.,Rosolem R.,et al. Correction of systematic model forcing bias of CLM using assimilation of cosmic-ray Neutrons and land surface temperature: A study in the Heihe Catchment, China (EI)[J]. Hydrology and Earth System Sciences,2015,19(1):615-629.
APA Han X.,Franssen H. J. H.,Rosolem R.,Jin R.,Li X.,&Vereecken H..(2015).Correction of systematic model forcing bias of CLM using assimilation of cosmic-ray Neutrons and land surface temperature: A study in the Heihe Catchment, China (EI).Hydrology and Earth System Sciences,19(1),615-629.
MLA Han X.,et al."Correction of systematic model forcing bias of CLM using assimilation of cosmic-ray Neutrons and land surface temperature: A study in the Heihe Catchment, China (EI)".Hydrology and Earth System Sciences 19.1(2015):615-629.

入库方式: OAI收割

来源:寒区旱区环境与工程研究所

浏览0
下载0
收藏0
其他版本

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。