Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator

This dataset contains hydrological, erosion, vegetation, ground cover, and other supplementary information from 272 rainfall simulation experiments conducted on 23 semiarid rangeland locations in Arizona and Nevada between 2002 and 2013. On 30 % of the plots, simulations were conducted up to fiv...

Full description

Bibliographic Details
Main Authors: V. Polyakov, J. Stone, C. Holifield Collins, M. A. Nearing, G. Paige, J. Buono, R.-L. Gomez-Pond
Format: Article
Language:English
Published: Copernicus Publications 2018-01-01
Series:Earth System Science Data
Online Access:https://www.earth-syst-sci-data.net/10/19/2018/essd-10-19-2018.pdf
id doaj-dab3cc959ae9403683e6ebe77f2aad26
record_format Article
spelling doaj-dab3cc959ae9403683e6ebe77f2aad262020-11-25T01:29:37ZengCopernicus PublicationsEarth System Science Data1866-35081866-35162018-01-0110192610.5194/essd-10-19-2018Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall SimulatorV. Polyakov0J. Stone1C. Holifield Collins2M. A. Nearing3G. Paige4J. Buono5R.-L. Gomez-Pond6Southwest Watershed Research Center, USDA-ARS, Tucson, AZ, USASouthwest Watershed Research Center, USDA-ARS, Tucson, AZ, USASouthwest Watershed Research Center, USDA-ARS, Tucson, AZ, USASouthwest Watershed Research Center, USDA-ARS, Tucson, AZ, USAEcosystem Science and Management, University of Wyoming, Laramie, WY, USAIndependent researcher: Ecohydrologist, Chennai, IndiaSchool of Natural Resources, University of Nebraska, Lincoln, NE, USAThis dataset contains hydrological, erosion, vegetation, ground cover, and other supplementary information from 272 rainfall simulation experiments conducted on 23 semiarid rangeland locations in Arizona and Nevada between 2002 and 2013. On 30 % of the plots, simulations were conducted up to five times during the decade of study. The rainfall was generated using the Walnut Gulch Rainfall Simulator on 2 m by 6 m plots. Simulation sites included brush and grassland areas with various degrees of disturbance by grazing, wildfire, or brush removal. This dataset advances our understanding of basic hydrological and biological processes that drive soil erosion on arid rangelands. It can be used to estimate runoff, infiltration, and erosion rates at a variety of ecological sites in the Southwestern USA. The inclusion of wildfire and brush treatment locations combined with long-term observations makes it important for studying vegetation recovery, ecological transitions, and the effect of management. It is also a valuable resource for erosion model parameterization and validation. <br><br> The dataset is available from the National Agricultural Library at <a href="https://data.nal.usda.gov/search/type/dataset" target="_blank">https://data.nal.usda.gov/search/type/dataset</a> (DOI: <a href="https://doi.org/10.15482/USDA.ADC/1358583" target="_blank">https://doi.org/10.15482/USDA.ADC/1358583</a>).https://www.earth-syst-sci-data.net/10/19/2018/essd-10-19-2018.pdf
collection DOAJ
language English
format Article
sources DOAJ
author V. Polyakov
J. Stone
C. Holifield Collins
M. A. Nearing
G. Paige
J. Buono
R.-L. Gomez-Pond
spellingShingle V. Polyakov
J. Stone
C. Holifield Collins
M. A. Nearing
G. Paige
J. Buono
R.-L. Gomez-Pond
Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator
Earth System Science Data
author_facet V. Polyakov
J. Stone
C. Holifield Collins
M. A. Nearing
G. Paige
J. Buono
R.-L. Gomez-Pond
author_sort V. Polyakov
title Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator
title_short Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator
title_full Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator
title_fullStr Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator
title_full_unstemmed Rainfall simulation experiments in the southwestern USA using the Walnut Gulch Rainfall Simulator
title_sort rainfall simulation experiments in the southwestern usa using the walnut gulch rainfall simulator
publisher Copernicus Publications
series Earth System Science Data
issn 1866-3508
1866-3516
publishDate 2018-01-01
description This dataset contains hydrological, erosion, vegetation, ground cover, and other supplementary information from 272 rainfall simulation experiments conducted on 23 semiarid rangeland locations in Arizona and Nevada between 2002 and 2013. On 30 % of the plots, simulations were conducted up to five times during the decade of study. The rainfall was generated using the Walnut Gulch Rainfall Simulator on 2 m by 6 m plots. Simulation sites included brush and grassland areas with various degrees of disturbance by grazing, wildfire, or brush removal. This dataset advances our understanding of basic hydrological and biological processes that drive soil erosion on arid rangelands. It can be used to estimate runoff, infiltration, and erosion rates at a variety of ecological sites in the Southwestern USA. The inclusion of wildfire and brush treatment locations combined with long-term observations makes it important for studying vegetation recovery, ecological transitions, and the effect of management. It is also a valuable resource for erosion model parameterization and validation. <br><br> The dataset is available from the National Agricultural Library at <a href="https://data.nal.usda.gov/search/type/dataset" target="_blank">https://data.nal.usda.gov/search/type/dataset</a> (DOI: <a href="https://doi.org/10.15482/USDA.ADC/1358583" target="_blank">https://doi.org/10.15482/USDA.ADC/1358583</a>).
url https://www.earth-syst-sci-data.net/10/19/2018/essd-10-19-2018.pdf
work_keys_str_mv AT vpolyakov rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
AT jstone rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
AT cholifieldcollins rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
AT manearing rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
AT gpaige rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
AT jbuono rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
AT rlgomezpond rainfallsimulationexperimentsinthesouthwesternusausingthewalnutgulchrainfallsimulator
_version_ 1725095974333841408