NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Press Enter or click the Search button to begin your search.

Back to Results
Impacts of Degradation on Water, Energy, and Carbon Cycling of the Amazon Tropical ForestsSelective logging, fragmentation, and understory fires directly degrade forest structure and composition. However, studies addressing the effects of forest degradation on carbon, water, and energy cycles are scarce. Here, we integrate field observations and high‐resolution remote sensing from airborne lidar to provide realistic initial conditions to the Ecosystem Demography Model (ED‐2.2) and investigate how disturbances from forest degradation affect gross primary production (GPP), evapotranspiration (ET), and sensible heat flux (H). We used forest structural information retrieved from airborne lidar samples (13,500 ha) and calibrated with 817 inventory plots (0.25 ha) across precipitation and degradation gradients in the eastern Amazon as initial conditions to ED‐2.2 model. Our results show that the magnitude and seasonality of fluxes were modulated by changes in forest structure caused by degradation. During the dry season and under typical conditions, severely degraded forests (biomass loss ≥66%) experienced water stress with declines in ET (up to 34%) and GPP (up to 35%) and increases of H (up to 43%) and daily mean ground temperatures (up to 6.5°C) relative to intact forests. In contrast, the relative impact of forest degradation on energy, water, and carbon cycles markedly diminishes under extreme, multiyear droughts, as a consequence of severe stress experienced by intact forests. Our results highlight that the water and energy cycles in the Amazon are driven by not only climate and deforestation but also the past disturbance and changes of forest structure from degradation, suggesting a much broader influence of human land use activities on the tropical ecosystems.
Document ID
20210014067
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Marcos Longo ORCID
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
Sassan Saatchi ORCID
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
Michael Keller ORCID
(United States Department of Agriculture Washington D.C., District of Columbia, United States)
Kevin Bowman ORCID
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
Antonio Ferraz
(Jet Propulsion Laboratory La Cañada Flintridge, United States)
Paul R Moorcroft ORCID
(Harvard University Cambridge, Massachusetts, United States)
Douglas C Morton
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Damien Bonal
(University of Lorraine Nancy, France)
Paulo Brando
(University of California, Irvine Irvine, California, United States)
Benoît Burban
(National Research Institute for Agriculture, Food and Environment Paris, France)
Géraldine Derroire ORCID
(National Research Institute for Agriculture, Food and Environment Paris, France)
Maiza N dos-Santos ORCID
(Brazilian Agricultural Research Corporation Brasília, Brazil)
Victoria Meyer
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
Scott Saleska
(University of Arizona Tucson, Arizona, United States)
Susan Trumbore ORCID
(University of California, Irvine Irvine, California, United States)
Grégoire Vincent
(Botany and Modelling of Plant Architecture and Vegetation Montpellier, France)
Date Acquired
April 20, 2021
Publication Date
June 30, 2020
Publication Information
Publication: Journal of Geophysical Research: Biogeosciences
Publisher: American Geophysical Union / Wiley
Volume: 125
Issue: 8
Issue Publication Date: August 1, 2020
ISSN: 2169-8953
e-ISSN: 2169-8961
Subject Category
Earth Resources And Remote Sensing
Funding Number(s)
WBS: 970315.02.01.01.65
CONTRACT_GRANT: 80NM0018D004
CONTRACT_GRANT: (NNH16ZDA001N-IDS
CONTRACT_GRANT: 16-IDS16-0049
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
No Preview Available