A New Canopy Emissivity Model for Sparsely Vegetated Surfaces Incorporating Soil Directional Emissivity and Topography

被引:1
|
作者
Cheng, Jie [1 ]
Dong, Shengyue [1 ]
机构
[1] Beijing Normal Univ, Inst Remote Sensing Sci & Engn, Fac Geog Sci, State Key Lab Remote Sensing Sci, Beijing 100875, Peoples R China
关键词
Soil; Surface topography; Surfaces; Reflectivity; Computational modeling; Land surface; Vegetation mapping; 4SAIL; canopy emissivity model; soil directional emissivity; solo slope; thermal-infrared (TIR) remote sensing; topography; REMOTE-SENSING DATA; RADIOMETRIC TEMPERATURES; THERMAL EMISSION; LEAF; REFLECTANCE; SIMULATION; SATELLITE; ALGORITHM; RADIATION; RADIANCE;
D O I
10.1109/TGRS.2024.3401840
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Soil directional emissivity plays a crucial role in canopy thermal-infrared (TIR) emissivity modeling over sparsely vegetated solo slopes. To our knowledge, the canopy emissivity model explicitly considers soil emissivity directionality, and topography does not exist. This study proposes a new canopy emissivity model under the framework of the four-stream approximation theory employed in the well-known 4SAIL model by incorporating soil directional emissivity and topography. The new model was validated by the discrete anisotropic radiative transfer (DART) model. The new model-simulated canopy emissivity data exhibited excellent consistency with the DART simulation data, and the bias, root mean square error (RMSE), and determination coefficient ( R-2 ) were -0.001, 0.003, and 0.97, respectively, under the different leaf area indices (LAIs), slopes, and view zenith angles (VZAs). Sensitivity analysis revealed that LAI and soil nadir emissivity explained most of the variance, with total sensitivity indices of 52.9% and 30.3%, respectively. The effects of soil directional emissivity, topography, and leaf angle distribution (LAD) on canopy emissivity were subsequently investigated, and the results indicated that the differences could reach more than 0.02 when soil directional emissivity and/or topography were neglected; moreover, the influence of LAD functions is not significant. The model proposed in this article provides a practical method for modeling mountainous area canopy emissivity and can improve estimates of surface broadband emissivity (BBE) and land surface temperature (LST).
引用
收藏
页码:1 / 11
页数:11
相关论文
共 50 条
  • [31] FRACTAL MICRO-ROUGHNESS MODEL AND OPTICAL EMISSIVITY PROPERTIES OF METALLIC SURFACES
    Maurice, G.
    Pigeat, Ph.
    Chagroune, L.
    Weber, B.
    Thomas, A.
    FRACTALS-COMPLEX GEOMETRY PATTERNS AND SCALING IN NATURE AND SOCIETY, 1994, 2 (02) : 233 - 236
  • [32] New directional spectral emissivity measurement apparatus simultaneously collecting the blackbody and sample radiation
    Yuan, Zeye
    Yu, Kun
    Li, Longfei
    Wang, Gangquan
    Zhang, Kaihua
    Liu, Yufang
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2022, 93 (04):
  • [33] Performance evaluation of four directional emissivity analytical models with thermal SAIL model and airborne images
    Ren, Huazhong
    Liu, Rongyuan
    Yan, Guangjian
    Li, Zhao-Liang
    Qin, Qiming
    Liu, Qiang
    Nerry, Francoise
    OPTICS EXPRESS, 2015, 23 (07): : A346 - A360
  • [34] A novel spectral emissivity model for rough surfaces applicable beyond geometrical optics region
    Wu, Jiangyuan
    Wang, Ningtao
    Dong, Wei
    An, Baolin
    Peng, Bo
    Yang, Zhen
    Duan, Yuanyuan
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2025, 214
  • [35] Scattering Effect Contributions to the Directional Canopy Emissivity and Brightness Temperature Based on CE-P and CBT-P Models
    Guo, Mingzhu
    Cao, Biao
    Fan, Wenjie
    Ren, Huazhong
    Cui, Yaokui
    Du, Yongming
    Liu, Qinhuo
    IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2019, 16 (06) : 957 - 961
  • [36] A new approach to predict soil temperature under vegetated surfaces
    Dolschak K.
    Gartner K.
    Berger T.W.
    Modeling Earth Systems and Environment, 2015, 1 (4)
  • [37] A soil moisture assimilation scheme based on the microwave Land Emissivity Model and the Community Land Model
    Zhang, Shenglei
    Shi, Jiancheng
    Dou, Youjun
    INTERNATIONAL JOURNAL OF REMOTE SENSING, 2012, 33 (09) : 2770 - 2797
  • [38] Note on a New Blackbody Fraction Function Used for Surfaces With a Linear Emissivity in a Wavelength Interval
    Jing, Wei
    Fang, Tiegang
    JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2013, 135 (05):
  • [39] Prediction model of saline of soil and its validation based on thermal infrared emissivity spectrum
    Kelimu, Ardak
    Tiyip, Tashpolat
    Zhang, Fei
    Lei, Lei
    Zhang, Dong
    Nongye Gongcheng Xuebao/Transactions of the Chinese Society of Agricultural Engineering, 2015, 31 (17): : 115 - 120
  • [40] Impact of 3-D structures on directional effective emissivity in urban areas based on DART model
    Zhang, Qi
    Wang, Dandan
    Gastellu-Etchegorry, Jean-Philippe
    Yang, Jinxin
    Qian, Yonggang
    BUILDING AND ENVIRONMENT, 2023, 239