DOE Data Explorer title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: AmeriFlux FLUXNET-1F US-Jo2 Jornada Experimental Range Mixed Shrubland

Abstract

This is the AmeriFlux Management Project (AMP) created FLUXNET-1F version of the carbon flux data for the site US-Jo2 Jornada Experimental Range Mixed Shrubland. This is the FLUXNET version of the carbon flux data for the site US-Jo2 Jornada Experimental Range Mixed Shrubland produced by applying the standard ONEFlux (1F) software. Site Description - The study area is in a mixed shrub-dominated portion of the San Andres Mountain piedmont, along the southeastern boundary of the Jornada Experimental Range (JER) in southern New Mexico, USA. The JER was established in 1912 as a response of scientis and landowner to the shrub enchroachment and loss of grasses due to extended grazing during the late 1800s, fire and climate change. JER has been a NSF LTER site since 1981.The study site is a small watershed (4.67 ha) in an alluvial slope or bajada, with three major areas (north-, south- and west-facing hillslopes) with low to moderate slopes (∼0–6°) with a mean slope of 2.6°, while the channel banks and propagating channel heads have higher slopes (∼15–25°). The site is charactetized by a high bare soil coverage (∼66%), ∼28% of mixed shrubs coverage and a low coverage of grass (∼4%) and weeds (∼2%).

Authors:
ORCiD logo ; ORCiD logo
  1. Arizona State University
Publication Date:
Research Org.:
Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States). AmeriFlux; Arizona State Univ., Tempe, AZ (United States)
Sponsoring Org.:
NSF LTER Program (NSF Grant DEB-1235828) and US Army Research Office (grant 56059‐EV‐PCS).
Geolocation:
32.5849, -106.6032
OSTI Identifier:
1881584
DOI:
https://doi.org/10.17190/AMF/1881584
Project Location:


Citation Formats

Vivoni, Enrique R., and Perez-Ruiz, Eli R. AmeriFlux FLUXNET-1F US-Jo2 Jornada Experimental Range Mixed Shrubland. United States: N. p., 2022. Web. doi:10.17190/AMF/1881584.
Vivoni, Enrique R., & Perez-Ruiz, Eli R. AmeriFlux FLUXNET-1F US-Jo2 Jornada Experimental Range Mixed Shrubland. United States. doi:https://doi.org/10.17190/AMF/1881584
Vivoni, Enrique R., and Perez-Ruiz, Eli R. 2022. "AmeriFlux FLUXNET-1F US-Jo2 Jornada Experimental Range Mixed Shrubland". United States. doi:https://doi.org/10.17190/AMF/1881584. https://www.osti.gov/servlets/purl/1881584. Pub date:Sat Jan 01 00:00:00 EST 2022
@article{osti_1881584,
title = {AmeriFlux FLUXNET-1F US-Jo2 Jornada Experimental Range Mixed Shrubland},
author = {Vivoni, Enrique R. and Perez-Ruiz, Eli R.},
abstractNote = {This is the AmeriFlux Management Project (AMP) created FLUXNET-1F version of the carbon flux data for the site US-Jo2 Jornada Experimental Range Mixed Shrubland. This is the FLUXNET version of the carbon flux data for the site US-Jo2 Jornada Experimental Range Mixed Shrubland produced by applying the standard ONEFlux (1F) software. Site Description - The study area is in a mixed shrub-dominated portion of the San Andres Mountain piedmont, along the southeastern boundary of the Jornada Experimental Range (JER) in southern New Mexico, USA. The JER was established in 1912 as a response of scientis and landowner to the shrub enchroachment and loss of grasses due to extended grazing during the late 1800s, fire and climate change. JER has been a NSF LTER site since 1981.The study site is a small watershed (4.67 ha) in an alluvial slope or bajada, with three major areas (north-, south- and west-facing hillslopes) with low to moderate slopes (∼0–6°) with a mean slope of 2.6°, while the channel banks and propagating channel heads have higher slopes (∼15–25°). The site is charactetized by a high bare soil coverage (∼66%), ∼28% of mixed shrubs coverage and a low coverage of grass (∼4%) and weeds (∼2%).},
doi = {10.17190/AMF/1881584},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2022},
month = {1}
}

Works referenced in this record:

AmeriFlux US-Jo2 Jornada Experimental Range Mixed Shrubland
dataset, January 2016