Search Results - "Chehbouni, A. G."

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  1. 1

    The use of high-resolution image time series for crop classification and evapotranspiration estimate over an irrigated area in central Morocco by Simonneaux, V., Duchemin, B., Helson, D., Er-Raki, S., Olioso, A., Chehbouni, A. G.

    Published in International journal of remote sensing (10-01-2008)
    “…A time series of eight high-resolution Landsat TM images, ranging over the crop season, has been acquired over an irrigated area in central Morocco. From this…”
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    Journal Article
  2. 2

    Monitoring of irrigated wheat in a semi-arid climate using crop modelling and remote sensing data: Impact of satellite revisit time frequency by Hadria, R., Duchemin, B., Lahrouni, A., Khabba, S., Er-raki, S., Dedieu, G., Chehbouni, A. G., Olioso§, A.

    Published in International journal of remote sensing (20-03-2006)
    “…The rationale of this research is to investigate approaches based on modelling and remote sensing data for estimating the spatial distribution of yield and…”
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    Journal Article
  3. 3

    Agrometerological study of semi-arid areas: an experiment for analysing the potential of time series of FORMOSAT-2 images (Tensift-Marrakech plain) by Duchemin, B., Hagolle, O., Mougenot, B., Benhadj, I., Hadria, R., Simonneaux, V., Ezzahar, J., Hoedjes, J., Khabba, S., Kharrou, M. H., Boulet, G., Dedieu, G., Er-Raki, S., Escadafal, R., Olioso, A., Chehbouni, A. G.

    Published in International journal of remote sensing (01-01-2008)
    “…Earth Observing Systems designed to provide both high spatial resolution (10 m) and high capacity of time revisit (a few days) offer strong opportunities for…”
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    Journal Article Conference Proceeding
  4. 4

    Modelling of daily fluxes of water and carbon from shortgrass steppes by Nouvellon, Y., Rambal, S., Lo Seen, D., Moran, M.S., Lhomme, J.P., Bégué, A., Chehbouni, A.G., Kerr, Y.

    Published in Agricultural and forest meteorology (05-02-2000)
    “…A process-based model for semi-arid grassland ecosystems was developed. It is driven by standard daily meteorological data and simulates with a daily time step…”
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    Journal Article
  5. 5

    A combined modeling and multipectral/multiresolution remote sensing approach for disaggregation of surface soil moisture : Application to SMOS configuration by MERLIN, Olivier, CHEHBOUNI, Abdel G, KERR, Yann H, NJOKU, Eni G, ENTEKHABI, Dara

    “…A new physically based disaggregation method is developed to improve the spatial resolution of the surface soil moisture extracted from the Soil Moisture and…”
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    Journal Article
  6. 6

    A combined modeling and multispectral/multiresolution remote sensing approach for disaggregation of surface soil moisture: application to SMOS configuration by Merlin, O., Chehbouni, A.G., Kerr, Y.H., Njoku, E.G., Entekhabi, D.

    “…A new physically based disaggregation method is developed to improve the spatial resolution of the surface soil moisture extracted from the Soil Moisture and…”
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    Journal Article
  7. 7

    Estimation of sensible heat flux over sparsely vegetated surfaces by Chehbouni, A., Lo Seen, D., Njoku, E.G., Lhomme, J.-P., Monteny, B., Kerr, Y.H.

    Published in Journal of hydrology (Amsterdam) (01-02-1997)
    “…The approach of using remote sensing of surface temperature to estimate spatially distributed surface energy balance components is very attractive. This…”
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    Journal Article
  8. 8

    Determination of vegetation parameters through measured and simulated AVHRR data over SALT-HAPEX-Sahel site by Gond, V., Cabot, F., Chehbouni, A., Meunier, J.-C.

    Published in Journal of hydrology (Amsterdam) (01-02-1997)
    “…Vegetation-related information is critical for modelling hydrological processes. Remotely sensed spectral data provide powerful means to characterize…”
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    Journal Article
  9. 9

    Combined use of NDVI Time Courses at Low and High Spatial Resolution to Estimate Land Cover and Crop Evapotranspiration in Semi-arid Areas by Benhadj, I., Simonneaux, V., Maisongrande, P., Khabba, S., Chehbouni, A.

    “…The general objective of this study is to establish the water balance over the semi-arid plain of Marrakech/Al Haouz, a 2000 km 2 intensively cropped area in…”
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    Conference Proceeding
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