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    Comparing Evapotranspiration from Eddy Covariance Measurements, Water Budgets, Remote Sensing, and Land Surface Models over Canada

    Source: Journal of Hydrometeorology:;2015:;Volume( 016 ):;issue: 004::page 1540
    Author:
    Wang, Shusen
    ,
    Pan, Ming
    ,
    Mu, Qiaozhen
    ,
    Shi, Xiaoying
    ,
    Mao, Jiafu
    ,
    Brümmer, Christian
    ,
    Jassal, Rachhpal S.
    ,
    Krishnan, Praveena
    ,
    Li, Junhua
    ,
    Black, T. Andrew
    DOI: 10.1175/JHM-D-14-0189.1
    Publisher: American Meteorological Society
    Abstract: his study compares six evapotranspiration ET products for Canada?s landmass, namely, eddy covariance EC measurements; surface water budget ET; remote sensing ET from MODIS; and land surface model (LSM) ET from the Community Land Model (CLM), the Ecological Assimilation of Land and Climate Observations (EALCO) model, and the Variable Infiltration Capacity model (VIC). The ET climatology over the Canadian landmass is characterized and the advantages and limitations of the datasets are discussed. The EC measurements have limited spatial coverage, making it difficult for model validations at the national scale. Water budget ET has the largest uncertainty because of data quality issues with precipitation in mountainous regions and in the north. MODIS ET shows relatively large uncertainty in cold seasons and sparsely vegetated regions. The LSM products cover the entire landmass and exhibit small differences in ET among them. Annual ET from the LSMs ranges from small negative values to over 600 mm across the landmass, with a countrywide average of 256 ± 15 mm. Seasonally, the countrywide average monthly ET varies from a low of about 3 mm in four winter months (November?February) to 67 ± 7 mm in July. The ET uncertainty is scale dependent. Larger regions tend to have smaller uncertainties because of the offset of positive and negative biases within the region. More observation networks and better quality controls are critical to improving ET estimates. Future techniques should also consider a hybrid approach that integrates strengths of the various ET products to help reduce uncertainties in ET estimation.
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      Comparing Evapotranspiration from Eddy Covariance Measurements, Water Budgets, Remote Sensing, and Land Surface Models over Canada

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4225263
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    contributor authorWang, Shusen
    contributor authorPan, Ming
    contributor authorMu, Qiaozhen
    contributor authorShi, Xiaoying
    contributor authorMao, Jiafu
    contributor authorBrümmer, Christian
    contributor authorJassal, Rachhpal S.
    contributor authorKrishnan, Praveena
    contributor authorLi, Junhua
    contributor authorBlack, T. Andrew
    date accessioned2017-06-09T17:16:15Z
    date available2017-06-09T17:16:15Z
    date copyright2015/08/01
    date issued2015
    identifier issn1525-755X
    identifier otherams-82178.pdf
    identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4225263
    description abstracthis study compares six evapotranspiration ET products for Canada?s landmass, namely, eddy covariance EC measurements; surface water budget ET; remote sensing ET from MODIS; and land surface model (LSM) ET from the Community Land Model (CLM), the Ecological Assimilation of Land and Climate Observations (EALCO) model, and the Variable Infiltration Capacity model (VIC). The ET climatology over the Canadian landmass is characterized and the advantages and limitations of the datasets are discussed. The EC measurements have limited spatial coverage, making it difficult for model validations at the national scale. Water budget ET has the largest uncertainty because of data quality issues with precipitation in mountainous regions and in the north. MODIS ET shows relatively large uncertainty in cold seasons and sparsely vegetated regions. The LSM products cover the entire landmass and exhibit small differences in ET among them. Annual ET from the LSMs ranges from small negative values to over 600 mm across the landmass, with a countrywide average of 256 ± 15 mm. Seasonally, the countrywide average monthly ET varies from a low of about 3 mm in four winter months (November?February) to 67 ± 7 mm in July. The ET uncertainty is scale dependent. Larger regions tend to have smaller uncertainties because of the offset of positive and negative biases within the region. More observation networks and better quality controls are critical to improving ET estimates. Future techniques should also consider a hybrid approach that integrates strengths of the various ET products to help reduce uncertainties in ET estimation.
    publisherAmerican Meteorological Society
    titleComparing Evapotranspiration from Eddy Covariance Measurements, Water Budgets, Remote Sensing, and Land Surface Models over Canada
    typeJournal Paper
    journal volume16
    journal issue4
    journal titleJournal of Hydrometeorology
    identifier doi10.1175/JHM-D-14-0189.1
    journal fristpage1540
    journal lastpage1560
    treeJournal of Hydrometeorology:;2015:;Volume( 016 ):;issue: 004
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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