Testing the potential of multi-spectral remote sensing for retrospectively estimating fire severity in African savannahs
暂无分享,去创建一个
Martin J. Wooster | Michael J. Falkowski | Alistair M. S. Smith | Andrew T. Hudak | A. Hudak | M. Falkowski | N. Drake | A. Smith | M. Wooster | F. M. Dipotso | Nicholas Drake | Frederick M. Dipotso
[1] Alistair M. S. Smith,et al. Estimating combustion of large downed woody debris from residual white ash , 2005 .
[2] N. Drake,et al. FIRE IN AFRICAN SAVANNA: TESTING THE IMPACT OF INCOMPLETE COMBUSTION ON PYROGENIC EMISSIONS ESTIMATES , 2005 .
[3] R. A. Lorenzo. When it's hot, it's hot. , 2005 .
[4] M. Wooster,et al. Boreal forest fires burn less intensely in Russia than in North America , 2004 .
[5] J. W. Wagtendonk,et al. Comparison of AVIRIS and Landsat ETM+ detection capabilities for burn severity , 2004 .
[6] Andrew T. Hudak,et al. Mapping fire scars in a southern African savannah using Landsat imagery , 2004 .
[7] P. Goovaerts,et al. Uncertainty in estimating carbon emissions from boreal forest fires , 2004 .
[8] C. Masiello,et al. Final recommendations for reference materials in black carbon analysis , 2003 .
[9] R. Mason,et al. Reactive gaseous mercury formation in the North Pacific Ocean's marine boundary layer: A potential role of halogen chemistry , 2003 .
[10] T. Landmann,et al. Characterizing sub-pixel Landsat ETM+ fire severity on experimental fires in the Kruger National Park, South Africa. , 2003 .
[11] M. Wooster,et al. Fire radiative energy for quantitative study of biomass burning: derivation from the BIRD experimental satellite and comparison to MODIS fire products. , 2003 .
[12] F. Lloret,et al. Influence of fire severity on plant regeneration by means of remote sensing imagery , 2003 .
[13] Martin J. Wooster,et al. Small‐scale experimental testing of fire radiative energy for quantifying mass combusted in natural vegetation fires , 2002 .
[14] Jay D. Miller,et al. Mapping forest post-fire canopy consumption in several overstory types using multi-temporal Landsat TM and ETM data , 2002 .
[15] E. Kasischke,et al. Emissions of carbon dioxide, carbon monoxide, and methane from boreal forest fires in 1998 , 2002 .
[16] Martin J. Wooster,et al. Texture based feature extraction: Application to burn scar detection in Earth observation satellite sensor imagery , 2002 .
[17] Matthew G. Rollins,et al. Mapping Fire Regimes Across Time and Space: Understanding Coarse and Fine-scale Fire Patterns , 2001 .
[18] M. Andreae,et al. Emission of trace gases and aerosols from biomass burning , 2001 .
[19] M. Molina,et al. Temperature-time curves at the soil surface in maquis summer fires , 2001 .
[20] S. Flasse,et al. An evaluation of different bi-spectral spaces for discriminating burned shrub-savannah , 2001 .
[21] C. Daughtry,et al. Plant Litter and Soil Reflectance , 2000 .
[22] M. Andreae,et al. Biogenic and Pyrogenic Emissions from Africa and their Impact on the Global Atmosphere , 2000 .
[23] S. Flasse,et al. Characterizing the spectral-temporal response of burned savannah using in situ spectroradiometry and infrared thermometry , 2000 .
[24] Daniel G. Neary,et al. Fire effects on belowground sustainability: a review and synthesis , 1999 .
[25] W. Hao,et al. Seasonality of carbon emissions from biomass burning in a Zambian savanna , 1999 .
[26] T. Waldrop,et al. A comparison of fire intensity levels for stand replacement of table mountain pine (Pinus pungens Lamb.) , 1999 .
[27] Michael D. King,et al. SCAR‐B fires in the tropics: Properties and remote sensing from EOS‐MODIS , 1998 .
[28] H. Eva,et al. Burnt area mapping in Central Africa using ATSR data , 1998 .
[29] J. Moreno,et al. Methods for quantifying fire severity in shrubland-fires , 1998, Plant Ecology.
[30] G. Asner. Biophysical and Biochemical Sources of Variability in Canopy Reflectance , 1998 .
[31] N. Georgiadis,et al. COMBUSTION IN NATURAL FIRES AND GLOBAL EMISSIONS BUDGETS , 1998 .
[32] T. R. Allen. Theory of reflectance and emittance spectroscopy , 1997 .
[33] R. Lucas,et al. Non-linear mixture modelling without end-members using an artificial neural network , 1997 .
[34] D. I. Sebacher,et al. Source compositions of trace gases released during African savanna fires , 1996 .
[35] C. Justice,et al. The quantity of biomass burned in southern Africa , 1996 .
[36] D. Ward,et al. Fuel biomass and combustion factors associated with fires in savanna ecosystems of South Africa and Zambia , 1996 .
[37] N. Zambatis,et al. SAFARI‐92 characterization of biomass and fire behavior in the small experimental burns in the Kruger National Park , 1996 .
[38] Wei Min Hao,et al. Spatial and temporal distribution of tropical biomass burning , 1994 .
[39] S. Gerstl,et al. Nonlinear spectral mixing models for vegetative and soil surfaces , 1994 .
[40] B. Hapke. Theory of reflectance and emittance spectroscopy , 1993 .
[41] J. Settle,et al. Linear mixing and the estimation of ground cover proportions , 1993 .
[42] P. W. Jacoby,et al. An improved method for measuring temperatures during range fires. , 1992 .
[43] Paul E. Johnson,et al. Simple algorithms for remote determination of mineral abundances and particle sizes from reflectance spectra , 1992 .
[44] W. Hao,et al. Emissions of N2O from the burning of biomass in an experimental system , 1991 .
[45] A. Huete,et al. Assessment of biophysical soil properties through spectral decomposition techniques , 1991 .
[46] P. Crutzen,et al. Biomass Burning in the Tropics: Impact on Atmospheric Chemistry and Biogeochemical Cycles , 1990, Science.
[47] C. Elvidge. Visible and near infrared reflectance characteristics of dry plant materials , 1990 .
[48] J. Levine. Global biomass burning - Atmospheric, climatic, and biospheric implications , 1990 .
[49] J. Levine. Burning trees and bridges , 1990, Nature.
[50] S. McNaughton,et al. Grassland fire dynamics in the serengeti ecosystem, and a potential method of retrospectively estimating fire energy , 1989 .
[51] R. Clark,et al. Spectral properties of ice‐particulate mixtures and implications for remote sensing: 1. Intimate mixtures , 1984 .
[52] Roger N. Clark,et al. Spectral properties of mixtures of montmorillonite and dark carbon grains: Implications for remote sensing minerals containing chemically and physically adsorbed water , 1983 .
[53] Paul E. Johnson,et al. A semiempirical method for analysis of the reflectance spectra of binary mineral mixtures , 1983 .
[54] B. Hapke. Bidirectional reflectance spectroscopy: 1. Theory , 1981 .
[55] R. D. De Lorenzo. When it's hot, it's hot. , 2005, Annals of emergency medicine.
[56] João M. N. Silva,et al. Spectral characterisation and discrimination of burnt areas , 1999 .
[57] D. Roy. Multi-temporal active-fire based burn scar detection algorithm , 1999 .
[58] E. Salinero. Remote sensing of large wildfires in the European Mediterranean Basin , 1999 .
[59] R. Scholes,et al. The Kalahari Transect: Research on Global Change and Sustainable Development in Southern Africa , 1997 .
[60] J. Houghton. Climate change 1994 : radiative forcing of climate change and an evaluation of the IPCC IS92 emission scenarios , 1995 .
[61] R. Hartford,et al. When It's Hot, It's Hot ... or Maybe It's Not! (Surface Flaming May Not Portend Extensive Soil Heating) , 1992 .
[62] E. Johnson,et al. Forest fire behavior , 1992 .
[63] J. Levine. Biomass Burning from the Perspective of the Global Carbon Cycle , 1991 .
[64] Jennifer Robinson,et al. Fire from space : global fire evaluation using infrared remote sensing , 1991 .
[65] J. Levine. Biomass Burning: Its History, Use, and Distribution and Its Impact on Environmental Quality and Global Climate , 1991 .
[66] W. Trollope,et al. Fire behaviour in the Kruger National Park. , 1985 .
[67] N. M. Tainton,et al. Ecological Effects of Fire in South African Ecosystems , 1984, Ecological Studies.
[68] R. M. Rice,et al. Soil heating in chaparral fires: effects on soil properties, plant nutrients, erosion, and runoff , 1979 .
[69] Kenneth P. Davis. Forest Fire: Control and Use , 1959 .