Comprehensive network hydraulic scaling datasets and associated resources (discharge, channel length surveys, watershed metadata, blueline network shapefiles and reference images)
Authors: | |
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Owners: | Christine D Leclerc |
Type: | Collection |
Storage: | The size of this collection is 0 bytes |
Created: | Dec 11, 2020 at 10:24 p.m. |
Last updated: | Jan 05, 2021 at 1:08 a.m. (Metadata update) |
Published date: | Dec 11, 2020 at 10:28 p.m. |
DOI: | 10.4211/hs.51b088686b1e438ab8da4e5cfc697a23 |
Citation: | See how to cite this resource |
Sharing Status: | Published |
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Abstract
Wetted channel networks expand and contract throughout the year. Direct observation of this process can be made by multiple intensive surveys of a catchment throughout the year. Godsey et al. (2014) suggest that the extent of the wetted channel network scales with discharge at the outlet by a power law (L = αQ^β). Using this relationship, we developed a framework to assess variability in the extent of wetted channels as a function of β and the variability in streamflow Q (Lapides et al., In Review, https://eartharxiv.org/mc6np/) This resource constitutes the empirical basis for that study, a comprehensive dataset compiled from literature including:
1 - Channel length survey data (csv files)
2 - Discharge time series data (csv files)
3 - Watershed metadata (csv file)
4 - Blueline network files (pdf, png, and shp files)
This collection is comprehensive in that it includes all watersheds where at least three channel length surveys have been conducted and where a corresponding discharge time series dataset is available. The requirement of a minimum of three channel length surveys stems from the data requirements to find α and β for the power law relationship between discharge and stream network length for headwater catchments (Godsey et al., 2014). At present, data for 14 watersheds worldwide are included in the collection along with reference maps, watershed metadata, shapefiles and a composite of USGS blueline stream network imagery with terrain for watersheds of interest in the United States. Notably, this collection brings data from a variety of earth science agencies worldwide into a common, clearly labelled format.
Methods used to process the datasets or create other assets in this collection are included in the abstracts or additional metadata for each of the four resources listed above. Python code used to process data, compute variables, and create graphics is available at: https://zenodo.org/record/4057320
Subject Keywords
Coverage
Spatial
Temporal
Start Date: | 11/01/1937 |
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End Date: | 06/28/2020 |












Related Resources
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This resource updates and replaces a previous version | Leclerc, C. D., D. A. Lapides, H. Moindu, D. Dralle, W. J. Hahm (2020). Comprehensive network hydraulic scaling datasets and associated resources (discharge, channel length surveys, watershed metadata, blueline network shapefiles and reference images), HydroShare, https://doi.org/10.4211/hs.d6d4085104c748e38606a0aac83e4779 |
This resource has been replaced by a newer version | Leclerc, C. D., D. A. Lapides, H. Moindu, D. Dralle, W. J. Hahm (2021). Comprehensive network hydraulic scaling datasets and associated resources (discharge, channel length surveys, watershed metadata, blueline network shapefiles and reference images), HydroShare, https://doi.org/10.4211/hs.e1d5bff5f7b44e29bcf9d91757360f18 |
Credits
Funding Agencies
This resource was created using funding from the following sources:
Agency Name | Award Title | Award Number |
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Natural Sciences and Engineering Research Council of Canada | Undergraduate Student Research Award |
How to Cite
This resource is shared under the Creative Commons Attribution CC BY.
http://creativecommons.org/licenses/by/4.0/
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