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Biosphere 2 Landscape Evolution Observatory miniLEO PERTH Experiment Dataset


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Storage: The size of this resource is 2.7 MB
Created: Feb 11, 2022 at 2:09 a.m.
Last updated: Feb 18, 2022 at 3:28 a.m.
DOI: 10.4211/hs.2a07b89d97334654859c62f178cdeb0d
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Sharing Status: Published
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Abstract

This data set was collected in miniLEO located in Landscape Evolution Observatory (LEO), Biosphere 2, University of Arizona, USA. This data was collected during 08/252014 - 09/22/2014 and was utilized to estimate the transit time distribution (TTD) and the StorAge Selection (SAS) function.

Subject Keywords

Coverage

Spatial

Coordinate System/Geographic Projection:
WGS 84 EPSG:4326
Coordinate Units:
Decimal degrees
Place/Area Name:
Biosphere 2, Oracle, AZ
Longitude
-110.8511°
Latitude
32.5788°

Temporal

Start Date:
End Date:

Content

readme.txt

This folder contains data collected in miniLEO during 08/25/2014 - 09/22/2014. The file contains the irrigation rate J, the total storage S, the unsaturated zone storage S_unsat, the saturated zone storage S_sat, and the discharge rate Q along with the deuterium enrichment D and the chloride concentration Cl.

Related Resources

The content of this resource can be executed by Pangle, L. A., Kim, M., Cardoso, C., Lora, M., Meira Neto, A. A., Volkmann, T. H. M., Wang, Y., Troch, P. A, and Harman, C. J. (2017), The mechanistic basis for storage-dependent age distributions of water discharged from an experimental hillslope, Water Resour. Res., 53, 2733– 2754, https://doi:10.1002/2016WR019901.
This resource is referenced by Kim, M., Pangle, L. A., Cardoso, C., Lora, M., Volkmann, T. H. M., Wang, Y., Harman, C. J., and Troch, P. A. (2016), Transit time distributions and StorAge Selection functions in a sloping soil lysimeter with time-varying flow paths: Direct observation of internal and external transport variability, Water Resour. Res., 52, 7105– 7129, https://doi:10.1002/2016WR018620.
This resource is referenced by Kim, M., & Harman, C. J. (2022). Transit Times and Storage Selection Functions in Idealized Hillslopes with Steady Infiltration. Water Resources Research, 58, e2019WR025917. https://doi.org/10.1029/2019WR025917

Credits

Funding Agencies

This resource was created using funding from the following sources:
Agency Name Award Title Award Number
Consortium of Universities for the Advancement of Hydrologic Science, Inc. (CUAHSI) Pathfinder Fellowship
National Science Foundation Collaborative Research: Hillslope hydrology under glass: Controlled experimental testing of hillslope-scale hydrologic transport theories at Biosphere 2 EAR-1344552
National Science Foundation Collaborative Research: Hillslope hydrology under glass: Controlled experimental testing of hillslope-scale hydrologic transport theories at Biosphere 2 EAR-1344664
National Science Foundation Collaborative Research: Coupled Hydrological and Geochemical Process Evolution at the Landscape Evolution Observatory EAR-1417097
Philecology Foundation

How to Cite

Kim, M., L. Pangle, C. Cardoso, T. H. M. Volkmann, Y. Wang, C. J. Harman, M. Lora, P. A. Troch, N. Abramson, A. Bugaj, E. A. Hunt, M. Sibayan (2022). Biosphere 2 Landscape Evolution Observatory miniLEO PERTH Experiment Dataset, HydroShare, https://doi.org/10.4211/hs.2a07b89d97334654859c62f178cdeb0d

This resource is shared under the Creative Commons Attribution CC BY.

http://creativecommons.org/licenses/by/4.0/
CC-BY

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