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A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport

Increased intensity and frequency of floods raise concerns about the release and transport of contaminated soil and sediment to and from rivers and streams. To model these processes during flooding events, we developed an External Coupler in Python to link the Hydrologic Engineering Center-River Ana...

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Autores principales: Shabani, Afshin, Woznicki, Sean A., Mehaffey, Megan, Butcher, Jonathan, Wool, Tim A., Whung, Pai-Yei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8811800/
https://www.ncbi.nlm.nih.gov/pubmed/35126656
http://dx.doi.org/10.1111/jfr3.12747
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author Shabani, Afshin
Woznicki, Sean A.
Mehaffey, Megan
Butcher, Jonathan
Wool, Tim A.
Whung, Pai-Yei
author_facet Shabani, Afshin
Woznicki, Sean A.
Mehaffey, Megan
Butcher, Jonathan
Wool, Tim A.
Whung, Pai-Yei
author_sort Shabani, Afshin
collection PubMed
description Increased intensity and frequency of floods raise concerns about the release and transport of contaminated soil and sediment to and from rivers and streams. To model these processes during flooding events, we developed an External Coupler in Python to link the Hydrologic Engineering Center-River Analysis System (HEC-RAS) 2D hydrodynamic model to the Water Quality Analysis Simulation Program (WASP). Accurate data transfer from a hydrodynamic model to a water quality model is critical. Our test results showed the External Coupler successfully linked HEC-RAS and WASP and addressed technical challenges in aggregating flow data and conserving mass during the flood event. We ran the coupled models for a 100-year flood event to calculate flood-induced transport of sediment-associated arsenic in Woodbridge Creek, NJ. Change in surface sediment and arsenic at the end of 48-h flood simulation ranged from a net loss of 13.5 cm to a net gain of 11.6 cm, and 16.2 to 2.9 mg/kg, respectively, per model segment, which demonstrates the capability of the coupled model for simulating sediment and contaminant transport in flood.
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spelling pubmed-88118002022-07-26 A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport Shabani, Afshin Woznicki, Sean A. Mehaffey, Megan Butcher, Jonathan Wool, Tim A. Whung, Pai-Yei J Flood Risk Manag Article Increased intensity and frequency of floods raise concerns about the release and transport of contaminated soil and sediment to and from rivers and streams. To model these processes during flooding events, we developed an External Coupler in Python to link the Hydrologic Engineering Center-River Analysis System (HEC-RAS) 2D hydrodynamic model to the Water Quality Analysis Simulation Program (WASP). Accurate data transfer from a hydrodynamic model to a water quality model is critical. Our test results showed the External Coupler successfully linked HEC-RAS and WASP and addressed technical challenges in aggregating flow data and conserving mass during the flood event. We ran the coupled models for a 100-year flood event to calculate flood-induced transport of sediment-associated arsenic in Woodbridge Creek, NJ. Change in surface sediment and arsenic at the end of 48-h flood simulation ranged from a net loss of 13.5 cm to a net gain of 11.6 cm, and 16.2 to 2.9 mg/kg, respectively, per model segment, which demonstrates the capability of the coupled model for simulating sediment and contaminant transport in flood. 2021-07-26 /pmc/articles/PMC8811800/ /pubmed/35126656 http://dx.doi.org/10.1111/jfr3.12747 Text en https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the Creative Commons Attribution-NonCommercial (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Article
Shabani, Afshin
Woznicki, Sean A.
Mehaffey, Megan
Butcher, Jonathan
Wool, Tim A.
Whung, Pai-Yei
A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport
title A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport
title_full A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport
title_fullStr A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport
title_full_unstemmed A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport
title_short A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport
title_sort coupled hydrodynamic (hec-ras 2d) and water quality model (wasp) for simulating flood-induced soil, sediment, and contaminant transport
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8811800/
https://www.ncbi.nlm.nih.gov/pubmed/35126656
http://dx.doi.org/10.1111/jfr3.12747
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