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Analysis of different hypotheses for modeling air–water exchange and temperature evolution in a tropical reservoir

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Fecha
2024
Autor
Alzate-Gómez J.-A
Roux H
Cassan L
Bonometti T
Vargas J.A.E
Jaramillo L.-J.M.

Citación

       
TY - GEN T1 - Analysis of different hypotheses for modeling air–water exchange and temperature evolution in a tropical reservoir Y1 - 2024 UR - http://hdl.handle.net/11407/8400 PB - IWA Publishing AB - The present analysis shows that the most crucial parameter for a correct representation of the observed temperature behavior are the heat exchange coefficient and the wind. The different approaches tested all have limitations, but they can reproduce reservoir temperature trends at different depths with a maximum standard deviation ranging from 3 °C to 8 °C. © 2024 The Authors. ER - @misc{11407_8400, author = {}, title = {Analysis of different hypotheses for modeling air–water exchange and temperature evolution in a tropical reservoir}, year = {2024}, abstract = {The present analysis shows that the most crucial parameter for a correct representation of the observed temperature behavior are the heat exchange coefficient and the wind. The different approaches tested all have limitations, but they can reproduce reservoir temperature trends at different depths with a maximum standard deviation ranging from 3 °C to 8 °C. © 2024 The Authors.}, url = {http://hdl.handle.net/11407/8400} }RT Generic T1 Analysis of different hypotheses for modeling air–water exchange and temperature evolution in a tropical reservoir YR 2024 LK http://hdl.handle.net/11407/8400 PB IWA Publishing AB The present analysis shows that the most crucial parameter for a correct representation of the observed temperature behavior are the heat exchange coefficient and the wind. The different approaches tested all have limitations, but they can reproduce reservoir temperature trends at different depths with a maximum standard deviation ranging from 3 °C to 8 °C. © 2024 The Authors. OL Spanish (121)
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Resumen
The present analysis shows that the most crucial parameter for a correct representation of the observed temperature behavior are the heat exchange coefficient and the wind. The different approaches tested all have limitations, but they can reproduce reservoir temperature trends at different depths with a maximum standard deviation ranging from 3 °C to 8 °C. © 2024 The Authors.
URI
http://hdl.handle.net/11407/8400
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  • Indexados Scopus [2005]

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