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1 June 2004 Integrating Remote Sensing and Ecosystem Process Models for Landscape- to Regional-Scale Analysis of the Carbon Cycle
DAVID P. TURNER, SCOTT V. OLLINGER, JOHN S. KIMBALL
Author Affiliations +
Abstract

A growing body of research has demonstrated the complementary nature of remote sensing and ecosystem modeling in studies of terrestrial carbon cycling. Whereas remote sensing instruments are designed to capture spatially continuous information on the reflectance properties of landscape and vegetation, models focus on the underlying biogeochemical processes that regulate carbon transformation, often over longer temporal scales. Remote sensing capabilities, developed over the past several decades, now provide regular, high-resolution (10-meter to 1-kilometer) mapping and monitoring of land surface characteristics relevant to modeling, including vegetation type, biomass, stand age class, phenology, leaf area index, and tree height. Integration of these data sets with ecosystem process models and distributed climate data provides a means for regional assessment of carbon fluxes and analysis of the underlying processes affecting them. Applications include monitoring of carbon pools and flux in response to the United Nations Framework Convention on Climate Change.

DAVID P. TURNER, SCOTT V. OLLINGER, and JOHN S. KIMBALL "Integrating Remote Sensing and Ecosystem Process Models for Landscape- to Regional-Scale Analysis of the Carbon Cycle," BioScience 54(6), 573-584, (1 June 2004). https://doi.org/10.1641/0006-3568(2004)054[0573:IRSAEP]2.0.CO;2
Published: 1 June 2004
JOURNAL ARTICLE
12 PAGES

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KEYWORDS
carbon flux
landscape
models
regional
remote sensing
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