Remote Sensing of vegetation chlorophyll fluorescence across spatial and temporal scales

dc.contributor.committeeChairRalf Bennartz, PhD
dc.contributor.committeeMemberSteven Goodbred, PhD
dc.contributor.committeeMemberMaria Luisa S.P. Jorge, PhD
dc.contributor.committeeMemberGeorge Hornberger, PhD
dc.contributor.committeeMemberGuilherme Gualda, PhD
dc.contributor.committeeMemberJames H. Clarke, PhD
dc.creatorMerrick, Trina Leigh Riley
dc.date.accessioned2020-08-22T17:27:51Z
dc.date.available2019-01-20
dc.date.issued2018-07-24
dc.description.abstractThis research is focused on understanding different aspects of passive remote sensing of vegetation chlorophyll fluorescence. The spatial scales in this dissertation range from plant level to the six biomes of Brazil. Observations were made at handheld to satellite level under actinic illumination and sunlight. The instrumentation platforms were handheld to satellite level. The temporal scales ranged from the seconds to years. The promise of chlorophyll fluorescence, and specifically solar-induced fluorescence, to infer plant functioning status is at the core of these studies. The responsiveness of solar-induced fluorescence to changing environmental conditions is what makes this quantity both desirable to monitor and complicated to interpret. These complexities require exploration of multiple techniques that transcend disciplinary boundaries, thus, this research incorporates numerous approaches and concepts necessary to further our understanding of plant functioning from passive remote sensing observations. The purpose of this dissertation is to exploit fully available spectral instrumentation by developing robust methods of characterizing chlorophyll fluorescence metrics. It is under this regime that I undertook a multi-instrument, interdisciplinary, and wide ranging examination of chlorophyll fluorescence at multiple timescales.
dc.format.mimetypeapplication/pdf
dc.identifier.urihttps://etd.library.vanderbilt.edu/etd-07152018-145153
dc.identifier.urihttp://hdl.handle.net/1803/13049
dc.subjectphotosynthesis
dc.subjectvegetation index
dc.subjectsolar-induced fluorescence
dc.subjectGPP
dc.subjectLUE
dc.subjectabsorbed photosynthetically active radiation
dc.titleRemote Sensing of vegetation chlorophyll fluorescence across spatial and temporal scales
dc.typedissertation
dc.type.materialtext
local.embargo.lift2019-01-20
local.embargo.terms2019-01-20
thesis.degree.disciplineEnvironmental Engineering
thesis.degree.grantorVanderbilt University
thesis.degree.leveldissertation
thesis.degree.namePHD

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