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Research Project: Understanding Ecological, Hydrological, and Erosion Processes in the Semiarid Southwest to Improve Watershed Management

Location: Southwest Watershed Research Center

Title: The ARID scoping study final report

Author
item REED, SASHA - Us Geological Survey (USGS)
item FELDMAN, ANDREW - Goddard Space Flight Center
item HANAN, NIALL - New Mexico State University
item MOORE, DAVID - University Of Arizona
item OJIMA, DENNIS - Colorado State University
item SMITH, WILLIAM - University Of Arizona
item WESSELS, KONRAD - George Mason University
item AMARAL, CIBELE - University Of Colorado
item BABST, FLURIN - University Of Arizona
item Biederman, Joel
item LITVAK, MARCY - University Of New Mexico
item MAC BEAN, NATASHA - Western University
item POULTER, BENJAMIN - Goddard Space Flight Center
item Scott, Russell
item BABST-KOSTECKA, ALICJA - University Of Arizona
item FU, ZHENG - University Of Arizona
item GREEN, JULIA - University Of Arizona
item KOKALY, RAYMOND - Us Geological Survey (USGS)
item SWAP, ROBERT - Goddard Space Flight Center
item SERBIN, SHAWN - Goddard Space Flight Center
item TUCKER, COMPTON - Goddard Space Flight Center
item WANG, LIXIN - Indiana University
item WATTS, JENNIFER - Woodwell Climate Research Center
item WOLFE, GLENN - Goddard Space Flight Center
item FLORES, ALEJANDRO - Boise State University
item RATTLING LEAF SR, JAMES - Rosebud Sioux Tribe
item WASHINGTON-ALLEN, ROBERT - University Of Nevada
item PRENTICE, KAREN - Bureau Of Land Management
item KACHERGIS, EMILY - Bureau Of Land Management
item REYES, JULIAN - Bureau Of Land Management
item RYAN, JASMINE - Us Geological Survey (USGS)
item SAN CLEMENTS, MIKE - National Ecological Observatory Network (NEON)
item LOESCHER, HANK - National Ecological Observatory Network (NEON)
item LEIDNER, ALLISON - US Department Of The Interior
item SWETNAM, TYSON - University Of Arizona
item COOK, BEN - Nasa Goddard Institute For Space Studies

Submitted to: Government Publication/Report
Publication Type: Government Publication
Publication Acceptance Date: 3/7/2025
Publication Date: 3/7/2025
Citation: Reed, S.C., Feldman, A.F., Hanan, N.P., Moore, D., Ojima, D., Smith, W.K., Wessels, K., Amaral, C., Babst, F., Biederman, J.A., Litvak, M., Mac Bean, N., Poulter, B., Scott, R.L., Babst-Kostecka, A., Fu, Z., Green, J.K., Kokaly, R.F., Swap, R., Serbin, S.P., Tucker, C.J., Wang, L., Watts, J., Wolfe, G.M., Flores, A., Rattling Leaf Sr, J., Washington-Allen, R., Prentice, K., Kachergis, E., Reyes, J., Ryan, J., San Clements, M., Loescher, H., Leidner, A., Swetnam, T., Cook, B. 2025. The ARID scoping study final report. Government Publication/Report. https://doi.org/10.3334/ORNLDAAC/2408.
DOI: https://doi.org/10.3334/ORNLDAAC/2408

Interpretive Summary: This dataset provides the final report from the Adaptation and Response in Drylands (ARID) scoping study. ARID is one of the two scoping studies funded by NASA in 2023 to identify the scientific questions and develop the initial study design and implementation concept for a new NASA Terrestrial Ecology field campaign. This report emphasizes a prioritized research agenda and an initial implementation plan, focusing on the western U.S. to deepen our understanding of national dryland processes and resources. ARID is also leveraging an extensive network of international sites and collaborators in Africa, Australia, Mexico, and South America. This global approach facilitates the evaluation, monitoring, and forecasting of drylands worldwide, ensuring a coordinated effort to address and inform solutions for the challenges facing these critical ecosystems. ARID will use cutting-edge approaches to address four Science Themes: 1) Climate Variability and Drought, 2) Ecosystem Structure, Function, and Biodiversity, 3) Carbon Cycle Interannual Variability and Long-Term Trends, and 4) Social-Ecological Systems. The scoping study performed extensive outreach, conducting over 160 meetings and events with hundreds of scientists and decision-makers across six continents, which translated to the ARID science plan being co-created with a wide range of contributors and perspectives, including remote sensing, modeling, and dryland scientists; Tribal Nations; and a range of U.S. federal entities. This report outlines a targeted plan to deploy field and NASA airborne instruments to vastly augment data derived from satellite observations that, when joined, will substantially advance quantification of drylands' large and changing role in the U.S. and in the Earth system.

Technical Abstract: This dataset provides the final report from the Adaptation and Response in Drylands (ARID) scoping study. ARID is one of the two scoping studies funded by NASA in 2023 to identify the scientific questions and develop the initial study design and implementation concept for a new NASA Terrestrial Ecology field campaign. This report emphasizes a prioritized research agenda and an initial implementation plan, focusing on the western U.S. to deepen our understanding of national dryland processes and resources. ARID is also leveraging an extensive network of international sites and collaborators in Africa, Australia, Mexico, and South America. This global approach facilitates the evaluation, monitoring, and forecasting of drylands worldwide, ensuring a coordinated effort to address and inform solutions for the challenges facing these critical ecosystems. ARID will use cutting-edge approaches to address four Science Themes: 1) Climate Variability and Drought, 2) Ecosystem Structure, Function, and Biodiversity, 3) Carbon Cycle Interannual Variability and Long-Term Trends, and 4) Social-Ecological Systems. The scoping study performed extensive outreach, conducting over 160 meetings and events with hundreds of scientists and decision-makers across six continents, which translated to the ARID science plan being co-created with a wide range of contributors and perspectives, including remote sensing, modeling, and dryland scientists; Tribal Nations; and a range of U.S. federal entities. This report outlines a targeted plan to deploy field and NASA airborne instruments to vastly augment data derived from satellite observations that, when joined, will substantially advance quantification of drylands' large and changing role in the U.S. and in the Earth system.