Monitoring post-fire recovery of various vegetation biomes using multi-wavelength satellite remote sensing

被引:17
作者
Bousquet, Emma [1 ]
Mialon, Arnaud [1 ]
Rodriguez-Fernandez, Nemesio [1 ]
Mermoz, Stephane [2 ]
Kerr, Yann [1 ]
机构
[1] Univ Toulouse CNES CNRS INRAE IRD UPS, Ctr Etud Spatiales Biosphere CESBIO, 18 Av Edouard Belin,Bpi 2801, F-31401 Toulouse 9, France
[2] GlobEO, F-31400 Toulouse, France
关键词
SOIL-MOISTURE RETRIEVAL; MICROWAVE EMISSION; PASSIVE MICROWAVE; DATA SETS; ABOVEGROUND BIOMASS; FIRE RESISTANCE; FOREST; CLIMATE; MODEL; EUCALYPTUS;
D O I
10.5194/bg-19-3317-2022
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Anthropogenic climate change is now considered to be one of the main factors causing an increase in both the frequency and severity of wildfires. These fires are prone to release substantial quantities of CO2 into the atmosphere and to endanger natural ecosystems and biodiversity. Depending on the ecosystem and climate regime, fires have distinct triggering factors and impacts. To better analyse this phenomenon, we investigated post-fire vegetation anomalies over different biomes, from 2012 to 2020. The study was performed using several remotely sensed quantities ranging from visible-infrared vegetation indices (the enhanced vegetation index (EVI)) to vegetation opacities obtained at several passive-microwave wavelengths (X-band, C-band, and L-band vegetation optical depth (X-VOD, C-VOD, and L-VOD)), ranging from 2 to 20 cm. It was found that C- and X-VOD are mostly sensitive to fire impact on low-vegetation areas (grass and shrublands) or on tree leaves, while L-VOD depicts the fire impact on tree trunks and branches better. As a consequence, L-VOD is probably a better way of assessing fire impact on biomass. The study shows that L-VOD can be used to monitor fire-affected areas as well as post-fire recovery, especially over densely vegetated areas.
引用
收藏
页码:3317 / 3336
页数:20
相关论文
共 110 条
[51]  
Hanson MA, 2012, SCIENCE, V335, P851, DOI [10.1126/science.1215904, 10.1126/science.1244693]
[52]   POST-FIRE RECOVERY OF EUCALYPT-DOMINATED VEGETATION COMMUNITIES IN THE SYDNEY BASIN, AUSTRALIA [J].
Heath, Jessica T. ;
Chafer, Chris J. ;
Bishop, Thomas F. A. ;
Van Ogtrop, Floris F. .
FIRE ECOLOGY, 2016, 12 (03) :53-79
[53]   Enhancements to, and forthcoming developments in the Interactive Multisensor Snow and Ice Mapping System (IMS) [J].
Helfrich, Sean R. ;
McNamara, Donna ;
Ramsay, Bruce H. ;
Baldwin, Thomas ;
Kasheta, Tim .
HYDROLOGICAL PROCESSES, 2007, 21 (12) :1576-1586
[54]   Record-setting climate enabled the extraordinary 2020 fire season in the western United States [J].
Higuera, Philip E. ;
Abatzoglou, John T. .
GLOBAL CHANGE BIOLOGY, 2021, 27 (01) :1-2
[55]   INFLUENCES OF TREE BIOLOGY AND FIRE IN THE SPATIAL STRUCTURE OF THE WEST-AFRICAN SAVANNA [J].
HOCHBERG, ME ;
MENAUT, JC ;
GIGNOUX, J .
JOURNAL OF ECOLOGY, 1994, 82 (02) :217-226
[56]  
Holgate CM, 2017, INT J WILDLAND FIRE, V26, P806, DOI [10.1071/WF16217, 10.1071/wf16217]
[57]  
Imaoka K, 2010, INT ARCH PHOTOGRAMM, V38, P13
[58]   PASSIVE MICROWAVE SENSING OF SOIL-MOISTURE UNDER VEGETATION CANOPIES [J].
JACKSON, TJ ;
SCHMUGGE, TJ ;
WANG, JR .
WATER RESOURCES RESEARCH, 1982, 18 (04) :1137-1142
[59]   VEGETATION EFFECTS ON THE MICROWAVE EMISSION OF SOILS [J].
JACKSON, TJ ;
SCHMUGGE, TJ .
REMOTE SENSING OF ENVIRONMENT, 1991, 36 (03) :203-212
[60]  
Jarvis A., 2006, Hole-filled seamless SRTM data V3