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Raw Data for paper entitled "A Field Evaluation on the Thermal Mitigation Effect of an Iron Sand-Enhanced Bioinfiltration Basin"
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Created: | Apr 22, 2025 at 1:49 p.m. | |
Last updated: | Apr 23, 2025 at 12:48 p.m. | |
Citation: | See how to cite this resource |
Sharing Status: | Public |
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Abstract
This is the raw data collected for the study of "A Field Evaluation on the Thermal Mitigation Effect of an Iron Sand-Enhanced Bioinfiltration Basin" which is currently under review. In this study, we monitored the water temperature into, within, and out of an iron sand-enhanced, underdrained bioinfiltration basin in year 2024, serving as pilot study to determine the value and practicality of implementing a longer-term monitoring program.
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Content
readme.md
This readme file was generated on 04/23/2025 by Kun Zhang
GENERAL INFORMATION
- Title of Dataset: A Field Evaluation on the Thermal Mitigation Effect of an Iron Sand-Enhanced Bioinfiltration Basin
Author/Principal Investigator Information
Name: Kun Zhang ORCID: 0000-0002-1062-8323 Institution: University of Minnesota Duluth Address: 221 Sciv, 1409 University Dr, Duluth, MN 55812 Email: kunzhang@d.umn.edu
- Date of data collection: 2024-05-07 to 2024-06-18
- Geographic location of data collection: 46.8203, -92.0804, Duluth MN, USA
- Information about funding sources that supported the collection of the data: Swenson College of Science and Engineering, University of Minnesota Duluth directly supported this project.
DATA & FILE OVERVIEW
File List:
- data_air.xlsx: air temperature (celsius)
- data_P.xlsx: precipitation (mm)
- data_Influent.xlsx: Influent rate (cos) and temperature (celsius) into the bioinfiltration
- data_Effluent.xlsx: Effluent rate (cos) and temperature (celsius) out of the bioinfiltration
- data_Soil.xlsx: Soil temperature at two different depths in the bioinfiltration (celsius)
- data_Tischer.xlsx: Water temperature in the Tischer Creek downstream of the bio infiltration (celsius)
METHODOLOGICAL INFORMATION
Description of methods used for collection/generation of data:
- Air temperature and precipitation were measured by a HOBO U30 weather station
- Influent and effluent flow and temperature and the water temperature in the stream were measured by HOBO U20L water level loggers
- Soil temperature was measured by Campbell Scientific CS655 sensors.
All the data was collected at a 5-min interval.
Credits
Funding Agencies
This resource was created using funding from the following sources:
Agency Name | Award Title | Award Number |
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University of Minnesota, Duluth | Monitoring the Water Balance of Green Stormwater Infrastructure – Building a Living and Learning Laboratory for the Community |
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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