Contribution of vegetation change to the surface radiation budget: A satellite perspective

被引:16
作者
Feng, Huihui [1 ,2 ]
Ye, Shuchao [1 ]
Zou, Bin [1 ,2 ]
机构
[1] Cent South Univ, Sch Geosci & Infophys, Changsha 410083, Peoples R China
[2] Chinese Minist Educ, Key Lab Metallogen Predict Nonferrous Met & Geol, Changsha 410083, Peoples R China
基金
中国国家自然科学基金;
关键词
Surface radiation budget; Vegetation change; Climate; Globe; Satellite; SOLAR-RADIATION; COVER CHANGES; LAND-USE; TEMPERATURE-CHANGE; AEROSOL; WORLD; EMISSIVITY; IMPACTS; CO2;
D O I
10.1016/j.gloplacha.2020.103225
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
The surface radiation budget is of crucial importance to ecosystem evolution but varies with complex atmospheric and surface conditions. Vegetation change alters the surface thermal properties and the subsequent radiation budget; however, the vegetation contribution is difficult to isolate from mixed influences. Based on satellite observations, we apply a novel trajectory-based approach to detect the impact of vegetation change on the global surface radiation variation in recent decades (2001-2016). Satellite data on radiation and vegetation available from the Clouds and the Earth's Radiant Energy System (CERES) and Moderate Resolution Imaging Spectroradiometer (MODIS) instruments are adopted for this investigation. Methodologically, the surface net radiation (Rn) in the nonchanged vegetation trajectory represents the synthetic result of atmospheric influences and serves as a reference for isolating Rn variations due to vegetation change. The results demonstrate that the multiyear mean of global Rn is 71.57 W.m(-2) with an increasing trend of 0.053 W.m(-2) yr(-1). Vegetation change contributes an additional 0.047 W.m(-2) yr(-1) of radiation in greening regions, accounting for 53.36% of the total increase in Rn. Spatially, the contribution of vegetation presents significant variability, with positive contributions located mainly in western Europe and southern Africa and negative contributions located mainly in parts of Asia and eastern Australia. Physically, the influence of vegetation change on the surface radiation budget originates from its alteration of albedo and emissivity, particularly the former. Specifically, a 1% increase in the normalized difference vegetation index (NDVI) is expected to reduce albedo by - 0.003 and increase surface net shortwave radiation by 0.86 W.m(-2). It can be concluded that the change in albedo by vegetation change has a nonnegligible influence on the surface radiation budget in different regions. These results help capture the physical mechanism responsible for the evolution of Earth's radiation and support environmental management.
引用
收藏
页数:8
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共 63 条
  • [1] [Anonymous], 2005, Radiative Forcing of Climate Change: Expanding the Concept and Addressing Uncertainties
  • [2] [Anonymous], 2010, MODIS Vegetation Index User's Guide (MOD13 Series) Version 2.00
  • [3] 21st Century drought-related fires counteract the decline of Amazon deforestation carbon emissions
    Aragao, Luiz E. O. C.
    Anderson, Liana O.
    Fonseca, Marisa G.
    Rosan, Thais M.
    Vedovato, Laura B.
    Wagner, Fabien H.
    Silva, Camila V. J.
    Silva Junior, Celso H. L.
    Arai, Egidio
    Aguiar, Ana P.
    Barlow, Jos
    Berenguer, Erika
    Deeter, Merritt N.
    Domingues, Lucas G.
    Gatti, Luciana
    Gloor, Manuel
    Malhi, Yadvinder
    Marengo, Jose A.
    Miller, John B.
    Phillips, Oliver L.
    Saatchi, Sassan
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [4] Global estimate of aerosol direct radiative forcing from satellite measurements
    Bellouin, N
    Boucher, O
    Haywood, J
    Reddy, MS
    [J]. NATURE, 2005, 438 (7071) : 1138 - 1141
  • [5] Biogeophysical impacts of land use on present-day climate: near-surface temperature change and radiative forcing
    Betts, Richard A.
    [J]. ATMOSPHERIC SCIENCE LETTERS, 2001, 2 (1-4): : 39 - 51
  • [6] The response of Arctic vegetation to the summer climate: relation between shrub cover, NDVI, surface albedo and temperature
    Blok, Daan
    Schaepman-Strub, Gabriela
    Bartholomeus, Harm
    Heijmans, Monique M. P. D.
    Maximov, Trofim C.
    Berendse, Frank
    [J]. ENVIRONMENTAL RESEARCH LETTERS, 2011, 6 (03):
  • [7] Climate, ecosystems, and planetary futures: The challenge to predict life in Earth system models
    Bonan, Gordon B.
    Doney, Scott C.
    [J]. SCIENCE, 2018, 359 (6375) : 533 - +
  • [8] Greater future global warming inferred from Earth's recent energy budget
    Brown, Patrick T.
    Caldeira, Ken
    [J]. NATURE, 2017, 552 (7683) : 45 - +
  • [9] Campbell J.B, 2011, Introduction to Remote Sensing - Fifth Edition
  • [10] Large contribution of natural aerosols to uncertainty in indirect forcing
    Carslaw, K. S.
    Lee, L. A.
    Reddington, C. L.
    Pringle, K. J.
    Rap, A.
    Forster, P. M.
    Mann, G. W.
    Spracklen, D. V.
    Woodhouse, M. T.
    Regayre, L. A.
    Pierce, J. R.
    [J]. NATURE, 2013, 503 (7474) : 67 - +