A coupled remote sensing and the Surface Energy Balance with Topography Algorithm (SEBTA) to estimate actual evapotranspiration over heterogeneous terrain

被引:31
|
作者
Gao, Z. Q. [2 ,3 ,4 ]
Liu, C. S. [1 ]
Gao, W. [1 ,3 ,4 ]
Chang, N. -B. [5 ]
机构
[1] E China Normal Univ, Minist Educ, Key Lab Geog Informat Sci, Shanghai 200062, Peoples R China
[2] Chinese Acad Sci, LREIS Inst Geog Sci & Nat Resources Res, Beijing, Peoples R China
[3] Colorado State Univ, USDA UV B Monitoring & Res Program, Ft Collins, CO 80523 USA
[4] Colorado State Univ, Nat Resource Ecol Lab, Ctr Remote Sensing & Modeling Agr Sustainabil, Ft Collins, CO 80523 USA
[5] Univ Cent Florida, Dept Civil Environm & Construct Engn, Orlando, FL 32816 USA
基金
中国国家自然科学基金;
关键词
LAND-SURFACE; HEAT-FLUX; EVAPO-TRANSPIRATION; VEGETATION INDEXES; 2-SOURCE MODEL; SYSTEM SEBS; SENSED DATA; EVAPORATION; SATELLITE; TEMPERATURE;
D O I
10.5194/hess-15-119-2011
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Evapotranspiration (ET) may be used as an ecological indicator to address the ecosystem complexity. The accurate measurement of ET is of great significance for studying environmental sustainability, global climate changes, and biodiversity. Remote sensing technologies are capable of monitoring both energy and water fluxes on the surface of the Earth. With this advancement, existing models, such as SEBAL, S_SEBI and SEBS, enable us to estimate the regional ET with limited temporal and spatial coverage in the study areas. This paper extends the existing modeling efforts with the inclusion of new components for ET estimation at different temporal and spatial scales under heterogeneous terrain with varying elevations, slopes and aspects. Following a coupled remote sensing and surface energy balance approach, this study emphasizes the structure and function of the Surface Energy Balance with Topography Algorithm (SEBTA). With the aid of the elevation and landscape information, such as slope and aspect parameters derived from the digital elevation model (DEM), and the vegetation cover derived from satellite images, the SEBTA can account for the dynamic impacts of heterogeneous terrain and changing land cover with some varying kinetic parameters (i.e., roughness and zero-plane displacement). Besides, the dry and wet pixels can be recognized automatically and dynamically in image processing thereby making the SEBTA more sensitive to derive the sensible heat flux for ET estimation. To prove the application potential, the SEBTA was carried out to present the robust estimates of 24 h solar radiation over time, which leads to the smooth simulation of the ET over seasons in northern China where the regional climate and vegetation cover in different seasons compound the ET calculations. The SEBTA was validated by the measured data at the ground level. During validation, it shows that the consistency index reached 0.92 and the correlation coefficient was 0.87.
引用
收藏
页码:119 / 139
页数:21
相关论文
共 27 条
  • [1] A coupled remote sensing and simplified surface energy balance approach to estimate actual evapotranspiration from irrigated fields
    Senay, Gabriel B.
    Budde, Michael
    Verdin, James P.
    Melesse, Assefa M.
    SENSORS, 2007, 7 (06) : 979 - 1000
  • [2] Calibration and validation of a remote sensing algorithm to estimate energy balance components and daily actual evapotranspiration over a drip-irrigated Merlot vineyard
    Carlos Poblete-Echeverría
    Samuel Ortega-Farias
    Irrigation Science, 2012, 30 : 537 - 553
  • [3] Evapotranspiration Estimation with Remote Sensing and Various Surface Energy Balance Algorithms-A Review
    Liou, Yuei-An
    Kar, Sanjib Kumar
    ENERGIES, 2014, 7 (05) : 2821 - 2849
  • [4] Estimation of evapotranspiration in lesser Himalayas using remote sensing based surface energy balance algorithm
    Nema, Manish K.
    Thakur, Hitesh P.
    Upreti, Hitesh
    Jain, Sanjay K.
    Mishra, P. K.
    Thayyen, Renoj J.
    Singh, P. K.
    Jain, Sharad K.
    GEOCARTO INTERNATIONAL, 2022, 37 (03) : 841 - 859
  • [5] Estimation of actual evapotranspiration of Mediterranean perennial crops by means of remote-sensing based surface energy balance models
    Minacapilli, M.
    Agnese, C.
    Blanda, F.
    Cammalleri, C.
    Ciraolo, G.
    D'Urso, G.
    Iovino, M.
    Pumo, D.
    Provenzano, G.
    Rallo, G.
    HYDROLOGY AND EARTH SYSTEM SCIENCES, 2009, 13 (07) : 1061 - 1074
  • [6] Estimation of land surface evapotranspiration over complex terrain based on multi-spectral remote sensing data
    Liu, Xingran
    Shen, Yanjun
    Li, Hongjun
    Guo, Ying
    Pei, Hongwei
    Dong, Wei
    HYDROLOGICAL PROCESSES, 2017, 31 (02) : 446 - 461
  • [7] Assessment of actual evapotranspiration over a semiarid heterogeneous land surface by means of coupled low-resolution remote sensing data with an energy balance model: comparison to extra-large aperture scintillometer measurements
    Saadi, Sameh
    Boulet, Gilles
    Bahir, Malik
    Brut, Aurore
    Delogu, Emilie
    Fanise, Pascal
    Mougenot, Bernard
    Simonneaux, Vincent
    Chabaane, Zohra Lili
    HYDROLOGY AND EARTH SYSTEM SCIENCES, 2018, 22 (04) : 2187 - 2209
  • [8] Modelling soil moisture and daily actual evapotranspiration: Integrating remote sensing surface energy balance and 1D Richards equation
    Awada, Hassan
    Sirca, Costantino
    Marras, Serena
    Castellini, Mirko
    Spano, Donatella
    Pirastru, Mario
    INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND GEOINFORMATION, 2024, 128
  • [9] Remote Sensing of Global Daily Evapotranspiration based on a Surface Energy Balance Method and Reanalysis Data
    Chen, Xuelong
    Su, Zhongbo
    Ma, Yaoming
    Trigo, Isabel
    Gentine, Pierre
    JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2021, 126 (16)
  • [10] Evaluating five remote sensing based single-source surface energy balance models for estimating daily evapotranspiration in a humid subtropical climate
    Bhattarai, Nishan
    Shaw, Stephen B.
    Quackenbush, Lindi J.
    Im, Jungho
    Niraula, Rewati
    INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND GEOINFORMATION, 2016, 49 : 75 - 86