Impact of cloud inhomogeneity on bi-directional reflectance

被引:0
|
作者
WANG Yue
机构
基金
中国国家自然科学基金;
关键词
cloud inhomogeneity; bidirectional reflectance; satellite retrieval;
D O I
暂无
中图分类号
P426.5 [云];
学科分类号
0706 ; 070601 ;
摘要
This paper uses SHDOM (Spherical Harmonics Discrete Ordinate Method) to calculate the nadir bidi-rectional reflectance distribution function (BRDF) of the cumulus and stratocumulus fields at the wave-lengths of 0.67 μm and 2.13μm, and discusses the impact of cloud inhomogeneity on BRDF. The cloud fields are adopted from I3RC Phase II, which are used to compare 3D radiative transfer models. The simulation results show that the cu field has 6% abnormal BRDF values (BRDF>1) with the increase of solar zenith angle. Further analyses show that grid cells whose BRDF is greater than one gather to-gether at the local trough of the top of cloud. These regions can receive not only the direct incident solar beam, but also the beam scattered by the higher cloud of its neighborhood. Hence, the BRDF of those regions is enhanced. The abnormal BRDF phenomenon shows that the cloud inhomogeneity can result in inconsistency between satellite observation and plane parallel theory, implying that the re-flectance observed by high resolution satellite is maybe enhanced by the cloud 3D effects. Thus one should take this fact into account when using the product retrieved by these data. The dominant solar zenith angles are quite large in the mid-high altitude area, and the impact of cloud inhomogeneity on these areas may be more significant.
引用
收藏
页码:124 / 130
页数:7
相关论文
共 50 条
  • [1] Impact of cloud inhomogeneity on bi-directional reflectance
    Wang Yue
    Lue DaRen
    Huo Juan
    [J]. CHINESE SCIENCE BULLETIN, 2008, 53 (01): : 124 - 130
  • [2] Bi-directional reflectance of corals
    Joyce, KE
    Phinn, SR
    [J]. INTERNATIONAL JOURNAL OF REMOTE SENSING, 2002, 23 (02) : 389 - 394
  • [3] Bi-directional characteristics of leaf reflectance and transmittance: Measurement and influence on canopy bi-directional reflectance
    Sanz, C
    Espana, M
    Baret, F
    Weiss, M
    Vaillant, L
    Hanocq, JF
    Sarrouy, C
    Clastre, P
    Bruguier, N
    Chelle, M
    Andrieu, B
    Zurfluh, O
    [J]. PHYSICAL MEASUREMENTS AND SIGNATURES IN REMOTE SENSING, VOLS 1 AND 2, 1997, : 583 - 590
  • [4] Measurement and use of bi-directional reflectance
    Zaworski, JR
    Welty, JR
    Drost, MK
    [J]. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1996, 39 (06) : 1149 - 1156
  • [5] Bi-directional reflectance distribution factor and gloss scales
    Obein, G
    Leroux, T
    Viénot, F
    [J]. HUMAN VISION AND ELECTRONIC IMAGING VI, 2001, 4299 : 279 - 290
  • [6] Generalizing the definition of the bi-directional reflectance distribution function
    Di Girolamo, L
    [J]. REMOTE SENSING OF ENVIRONMENT, 2003, 88 (04) : 479 - 482
  • [7] Mid-infrared bi-directional reflectance spectroscopy of impact melt glasses and tektites
    Morlok, Andreas
    Stojic, Aleksandra
    Weber, Iris
    Hiesinger, Harald
    Zanetti, Michael
    Helbert, Joern
    [J]. ICARUS, 2016, 278 : 162 - 179
  • [8] Direct tensor rendering using bi-directional reflectance model
    Nagasawa, M
    Suzuki, Y
    [J]. VISUAL DATA EXPLORATION AND ANALYSIS VII, 2000, 3960 : 290 - 299
  • [9] Bi-Directional Reflectance Factor Determination of the Railroad Valley Playa
    Bruegge, Carol J.
    Coburn, Craig
    Elmes, Arthur
    Helmlinger, Mark C.
    Kataoka, Fumie
    Kuester, Michele
    Kuze, Akihiko
    Ochoa, Tina
    Schaaf, Crystal
    Shiomi, Kei
    Schwandner, Florian M.
    [J]. REMOTE SENSING, 2019, 11 (22)
  • [10] Anonymous Authentication with a Bi-directional Identity Federation in the Cloud
    Rashid, Fatema
    Miri, Ali
    [J]. HUMAN ASPECTS OF INFORMATION SECURITY, PRIVACY, AND TRUST, 2016, 9750 : 57 - 64