Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Jérome Demarty"'
Autor:
Sivelle, Vianney, Jourde, Hervé, Fischer, Pierre, Yohann Cousquer, Aliouache, Mohammed, Artigue, Guillaume, Cinkus, Guillaume, Jérome Demarty, Dezetter, Alain, Etchanchu, Jordi, Guinot, Vincent, Johannet, Anne, Léonardi, Véronique, Majdalani, Samer, Laïna Pérotin, Pistre, Séverin, Tramblay, Yves, Vinches, Marc, Chaoqi Wang
Publikováno v:
Eurokarst 2022-3rd European Conference on Karst Hydrogeology and Carbonate Reservoirs
Eurokarst 2022-3rd European Conference on Karst Hydrogeology and Carbonate Reservoirs, Jun 2022, Malaga, Spain., 2022
Eurokarst 2022-3rd European Conference on Karst Hydrogeology and Carbonate Reservoirs, Jun 2022, Malaga, Spain., 2022
International audience
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::355dea334ae9e4b4e753c61e5b849a9e
https://imt-mines-ales.hal.science/hal-03715038/document
https://imt-mines-ales.hal.science/hal-03715038/document
Autor:
Héloise Bénard, Pierre-Alain Ayral, Jean-Stéphane Bailly, Brice Boudevillain, Cédric Champollion, Jérome Demarty, Christelle Batiot-Guilhe, Didier Josselin, Hervé Jourde, Patrick Lachassagne, Jérôme Molenat, Guillaume Nord, Fabrice Vinatier
Publikováno v:
IAHS-AISH Scientific Assembly 2022
IAHS-AISH Scientific Assembly 2022, May 2022, Montpellier, France
IAHS-AISH Scientific Assembly 2022, May 2022, Montpellier, France
The eLTER H2020 process aims at developing an European ecosystem research infrastructure and at creating long term observations platforms. In this context, we proposed a platform called P3M (Mediterranean Plain, Piedmont and Plateau) located in the M
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fcdb3520615fdb0fba42229eda03463b
https://hal.inrae.fr/hal-03752134/document
https://hal.inrae.fr/hal-03752134/document
Publikováno v:
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, Vol 14, Pp 818-826 (2021)
A new approach based on the change detection technique is proposed for the estimation of surface soil moisture (SSM) from a time series of radar measurements. A new index of reflectivity (IR) is defined that uses radar signals and Fresnel coefficient
Externí odkaz:
https://doaj.org/article/a860645f3b9e4e41a9c2c3320e024666
Publikováno v:
Remote Sensing, Vol 13, Iss 6, p 1086 (2021)
Continuous daily estimates of evapotranspiration (ET) spatially distributed at plot scale are required to monitor the water loss and manage crop irrigation needs. Remote sensing approaches in the thermal infrared (TIR) domain are relevant to assess a
Externí odkaz:
https://doaj.org/article/336f407ddebc495b8d3c861aa5a603aa
Autor:
Bernard Cappelaere, Denis Feurer, Théo Vischel, Catherine Ottlé, Hassane Bil-Assanou Issoufou, Stéphane Saux-Picart, Ibrahim Maïnassara, Monique Oï, Jean-Philippe Chazarin, Hélène Barral, Benoit Coudert, Jérôme Demarty
Publikováno v:
Atmosphere, Vol 11, Iss 5, p 465 (2020)
In distributed land surface modeling (LSM) studies, uncertainty in the rainfields that are used to force models is a major source of error in predicted land surface response variables. This is particularly true for applications in the African Sahel r
Externí odkaz:
https://doaj.org/article/d5b6d0310d304be98bed7d4b67a5d505
Autor:
Aubin Allies, Jérôme Demarty, Albert Olioso, Ibrahim Bouzou Moussa, Hassane Bil-Assanou Issoufou, Cécile Velluet, Malik Bahir, Ibrahim Maïnassara, Monique Oï, Jean-Philippe Chazarin, Bernard Cappelaere
Publikováno v:
Remote Sensing, Vol 12, Iss 3, p 380 (2020)
In many tropical areas, evapotranspiration is the most important but least known component of the water cycle. An innovative method, named E3S (for EVASPA S-SEBI Sahel), was developed to provide spatially-distributed estimates of daily actual evapotr
Externí odkaz:
https://doaj.org/article/349c436d26574370b12dab91ddeef895
Autor:
Emilie Delogu, Gilles Boulet, Albert Olioso, Sébastien Garrigues, Aurore Brut, Tiphaine Tallec, Jérôme Demarty, Kamel Soudani, Jean-Pierre Lagouarde
Publikováno v:
Remote Sensing, Vol 10, Iss 11, p 1806 (2018)
Using surface temperature as a signature of the surface energy balance is a way to quantify the spatial distribution of evapotranspiration and water stress. In this work, we used the new dual-source model named Soil Plant Atmosphere and Remote Sensin
Externí odkaz:
https://doaj.org/article/c1c584cf8a3a448ba29e3de57c4b6fa4