Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site
This paper presents a comparison and an evaluation of five soil moisture products based on satellite-based passive and active microwave measurements. Products are evaluated for 2005–2006 against ground measurements obtained from the soil moisture network deployed in Mali (Sahel) in the...
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Series: | Hydrology and Earth System Sciences |
Online Access: | http://www.hydrol-earth-syst-sci.net/14/141/2010/hess-14-141-2010.pdf |
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doaj-f0042b3624fe436da9ec351a877cbe882020-11-25T00:10:59ZengCopernicus PublicationsHydrology and Earth System Sciences1027-56061607-79382010-01-01141141156Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian siteC. GruhierP. de RosnayS. HasenauerT. HolmesR. de JeuY. KerrE. MouginE. NjokuF. TimoukW. WagnerM. ZribiThis paper presents a comparison and an evaluation of five soil moisture products based on satellite-based passive and active microwave measurements. Products are evaluated for 2005–2006 against ground measurements obtained from the soil moisture network deployed in Mali (Sahel) in the framework of the African Monsoon Multidisciplinary Analysis project. It is shown that the accuracy of the soil moisture products is sensitive to the retrieval approach as well as to the sensor type (active or passive) and to the signal frequency (from 5.6 GHz to 18.8 GHz). The spatial patterns of surface soil moisture are compared between the different products at meso-scale (14.5° N–17.5° N and 2° W–1° W). A general good consistency between the different satellite soil moisture products is shown in terms of meso-scale spatial distribution, in particular after convective rainfall occurrences. Comparison to ground measurement shows that although soil moisture products obtained from satellite generally over-estimate soil moisture values during the dry season, most of them capture soil moisture temporal variations in good agreement with ground station measurements. http://www.hydrol-earth-syst-sci.net/14/141/2010/hess-14-141-2010.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
C. Gruhier P. de Rosnay S. Hasenauer T. Holmes R. de Jeu Y. Kerr E. Mougin E. Njoku F. Timouk W. Wagner M. Zribi |
spellingShingle |
C. Gruhier P. de Rosnay S. Hasenauer T. Holmes R. de Jeu Y. Kerr E. Mougin E. Njoku F. Timouk W. Wagner M. Zribi Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site Hydrology and Earth System Sciences |
author_facet |
C. Gruhier P. de Rosnay S. Hasenauer T. Holmes R. de Jeu Y. Kerr E. Mougin E. Njoku F. Timouk W. Wagner M. Zribi |
author_sort |
C. Gruhier |
title |
Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site |
title_short |
Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site |
title_full |
Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site |
title_fullStr |
Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site |
title_full_unstemmed |
Soil moisture active and passive microwave products: intercomparison and evaluation over a Sahelian site |
title_sort |
soil moisture active and passive microwave products: intercomparison and evaluation over a sahelian site |
publisher |
Copernicus Publications |
series |
Hydrology and Earth System Sciences |
issn |
1027-5606 1607-7938 |
publishDate |
2010-01-01 |
description |
This paper presents a comparison and an evaluation of five soil moisture products based on satellite-based passive and active microwave measurements. Products are evaluated for 2005–2006 against ground measurements obtained from the soil moisture network deployed in Mali (Sahel) in the framework of the African Monsoon Multidisciplinary Analysis project. It is shown that the accuracy of the soil moisture products is sensitive to the retrieval approach as well as to the sensor type (active or passive) and to the signal frequency (from 5.6 GHz to 18.8 GHz). The spatial patterns of surface soil moisture are compared between the different products at meso-scale (14.5° N–17.5° N and 2° W–1° W). A general good consistency between the different satellite soil moisture products is shown in terms of meso-scale spatial distribution, in particular after convective rainfall occurrences. Comparison to ground measurement shows that although soil moisture products obtained from satellite generally over-estimate soil moisture values during the dry season, most of them capture soil moisture temporal variations in good agreement with ground station measurements. |
url |
http://www.hydrol-earth-syst-sci.net/14/141/2010/hess-14-141-2010.pdf |
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