Aller au contenu
Aller au fil d'ariane
Espace ADUM
FR
|
EN
Doctorat Toulouse
DOCTORAT DE L'UNIVERSITE DE TOULOUSE
l'École des Docteurs de Toulouse (EDT)
Les établissements
Les écoles doctorales
Conseil de la politique doctorale
FAIRE UN
DOCTORAT
Faire un doctorat
Vie doctorante
S'inscrire / se réinscrire
Cotutelle de thèse
Soutenir sa thèse
Dérogation HDR
LES FORMATIONS
Les offres de formation
Les itinéraires de formation
S'inscrire
INTERNATIONALISATION
Les programmes
Programme China Scholarship Council (CSC)
La mobilité internationale
Banque internationale de sujets
APRÈS LE
DOCTORAT
L'observatoire du doctorat
Toulouse Alumni Docteurs
Les offres d'emploi
Nitu kumari OJHA - Admise au titre de docteur
Doctorat Surfaces et interfaces continentales, Hydrologie
Thèse soutenue le
15 novembre 2021 -
Université de Toulouse
Ecole doctorale
:
SDU2E - Sciences de l'Univers, de l'Environnement et de l'Espace
Sujet
: Estimation de l’humidité du sol à haute résolution spatio-temporelle : une nouvelle approche basée sur la synergie des observations micro-ondes actives/passives et optiques/thermiques
Mots-clés de la thèse
: Humidité du sol,Télédétection,Haute résolution,Multi-capteur,
Direction de thèse
: Olivier MERLIN
Unité de recherche :
CESBIO - Centre d'Etudes Spatiales de la BIOsphère UMR 5126
- TOULOUSE
Master - Master in Geoiformatics
obtenu en avril 2015 - University of Pune
Option :
Geoinformatics
Production scientifique
-
Ojha, Nitu and Merlin, Olivier and Suere, Christophe and Escorihuela, Maria Jos{\'e}
2021. Extending the Spatio-Temporal Applicability of DISPATCH Soil Moisture Downscaling Algorithm: A Study Case Using SMAP, MODIS and Sentinel-3 Data
Frontiers in Environmental Science,
9, 40
,
Ojha, N., Merlin, O., Suere, C. and Escorihuela, M.J., 2021. Extending the Spatio-Temporal Applicability of DISPATCH Soil Moisture Downscaling Algorithm: A Study Case Using SMAP, MODIS and Sentinel-3 Data. Frontiers in Environmental Science, 9, p.40.
-
Ait Hssaine, Bouchra and Chehbouni, Abdelghani and Er-Raki, Salah and Khabba, Said and Ezzahar, Jamal and Ouaadi, Nadia and Ojha, Nitu and Rivalland, Vincent and Merlin, Olivier
2021. On the Utility of High-Resolution Soil Moisture Data for Better Constraining Thermal-Based Energy Balance over Three Semi-Arid Agricultural Areas
Remote Sensing,
13,727
,
Ait Hssaine, B., Chehbouni, A., Er-Raki, S., Khabba, S., Ezzahar, J., Ouaadi, N., Ojha, N., Rivalland, V. and Merlin, O., 2021. On the Utility of High-Resolution Soil Moisture Data for Better Constraining Thermal-Based Energy Balance over Three Semi-
-
Román-Cascón, C., Lothon, M., Lohou, F., Ojha, N., Merlin, O., Aragonés, D., González-Dugo, M.P., Andreu, A., Pellarin, T., Brut, A. and Soriguer, R.C., 2020.
2020. Can We Use Satellite-Based Soil-Moisture Products at High Resolution to Investigate Land-Use Differences and Land–Atmosphere Interactions? A Case Study in the Savanna
Can We Use Satellite-Based Soil-Moisture Products at High Resolution to Investigate Land-Use Differences and Land–Atmosphere Interactions? A Case Study in the Savanna,
12(11), 1701.
,
-
Nitu Ojha, Olivier Merlin, Maria Jose Escorihuela
2020. Towards Synergies Between Thermal-Disaggregated And Sentinel1Based Soil Moisture Data Sets
Towards Synergies Between Thermal-Disaggregated And Sentinel1Based Soil Moisture Data Sets,
Conference: 2020 Mediterranean and Middle-East Geoscience and Remote Sensing Symposium (M2GARSS)
,
-
Bouchra Ait Hssaine , Olivier Merlin, Jamal Ezzahar, Nitu Ojha, Salah Er-raki, and Said Khabba
2019. An evapotranspiration model self-calibrated from remotely sensed surface soil moisture, land surface temperature and vegetation cover fraction: application to disaggregated SMOS and MODIS data
Hydrol. Earth Syst. Sci,
10.5194/hess-2019-105
,
-
Olivier Merlin1, Luis Olivera-Guerra1, Christophe SUERE1, Maria Jose Escorihuela2, Salah Er-Raki3
2019. Disaggregation of SMOS Soil Moisture at 100 m resolution using Landsat data and a stepwise approach
Living Planet symposium,
LPS19
,
-
Luis Olivera-Guerra , Olivier Merlin , Salah Er-Raki , Maria Jose Escorihuela , Mireia Fontanet , Nitu Ojha
2019. Irrigation Mapping at the Crop Field Scale Using a Combined Optical/Thermal Data and FAO-Based Modeling
Living Planet symposium,
LSP19
,
-
Bouchra Ait Hssaine, Olivier Merlin, Jamal Ezzahar, Nitu Ojha, Salah Er-raki, and Said Khabba
2019. Mapping evapotranspiration at 1 km resolution from disaggregated SMOS soil moisture and MODIS surface temperature/vegetation index data
Living Planet symposium,
LSP19
,
-
Ojha, Nitu and Merlin, Olivier and Molero, Beatriz and Suere, Christophe and Olivera-Guerra, Luis and Ait Hssaine, Bouchra and Amazirh, Abdelhakim and Al Bitar, Ahmad and Escorihuela, Maria Jose and Er-Raki, Salah
2019. Stepwise disaggregation of SMAP soil moisture at 100 m resolution using Landsat-7/8 data and a varying intermediate resolution
Remote Sensing,
11,1863
,
Ojha, N., Merlin, O., Molero, B., Suere, C., Olivera-Guerra, L., Ait Hssaine, B., Amazirh, A., Al Bitar, A., Escorihuela, M.J. and Er-Raki, S., 2019. Stepwise disaggregation of SMAP soil moisture at 100 m resolution using Landsat-7/8 data and a varyi
-
Bouchra Ait Hssaine , Olivier Merlin , Jamal Ezzahar , Nitu Ojha , Said Khabba
2018. Mapping Evapotranspiration by combining Optical/Microwave remote sensing data (multi-resolution) and surface-atmosphere exchange modeling
IX International Symposium on Irrigation of Horticultural Crops,
symposium nr 612, abstract nr 61
,
-
Nitu Oiha; Olivier Merlin; Beatriz Molero; Christophe Sucre; Luis Olivera; Vincent Rivalland; Salah Er-Raki
2018. Sequential Downscaling of the SMOS Soil Moisture at 100 M Resolution Via a Variable Intermediate Spatial Resolution
IGARSS 2018 - 2018 IEEE International Geoscience and Remote Sensing Symposium,
2018, pp. 3735-3738
,
http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=8518599&isnumber=8517275
Dernière mise à jour le 29 janvier 2022