Numerical modeling of hypolimnetic oxygenation by electrolysis of water

The paper presents a novel method for hypolimnetic oxygenation by electrolysis of water. The performance of the method is investigated by the laboratory and the field experiment. The laboratory experiment is conducted in a 90 L vessel, while the field experiment is conducted at the lake Biwa in Japa...

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Main Authors: Jaćimović Nenad M., Hosoda Takashi, Park Ho-Dong, Ivetić Marko V.
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2017-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600190J.pdf
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spelling doaj-1eea8ee59e3b40a5ab984facbc72a8b72021-01-02T05:43:14ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632017-01-0121suppl. 367969010.2298/TSCI160201190J0354-98361600190JNumerical modeling of hypolimnetic oxygenation by electrolysis of waterJaćimović Nenad M.0Hosoda Takashi1Park Ho-Dong2Ivetić Marko V.3Faculty of Civil Engineering, Department of Hydraulic and Environmental Engineering, BelgradeKyoto University, Kyoto, JapanShinshu University, Matsumoto, JapanFaculty of Civil Engineering, Department of Hydraulic and Environmental Engineering, BelgradeThe paper presents a novel method for hypolimnetic oxygenation by electrolysis of water. The performance of the method is investigated by the laboratory and the field experiment. The laboratory experiment is conducted in a 90 L vessel, while the field experiment is conducted at the lake Biwa in Japan. In order to provide a better insight into involved processes, a numerical model for simulation of bubble flow is developed with consideration of gas compressibility and oxygen dissolution. The model simultaneously solves 3-D volume averaged two-fluid governing equations. Developed model is firstly verified by simulation of bubble flow experiments, reported in the literature, where good qualitative agreement between measured and simulated results is observed. In the second part, the model is applied for simulation of conducted water electrolysis experiments. The model reproduced the observed oxygen concentration dynamics reasonably well. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. 37009]http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600190J.pdfeutrophicationelectrolysisoxygenationnumerical model
collection DOAJ
language English
format Article
sources DOAJ
author Jaćimović Nenad M.
Hosoda Takashi
Park Ho-Dong
Ivetić Marko V.
spellingShingle Jaćimović Nenad M.
Hosoda Takashi
Park Ho-Dong
Ivetić Marko V.
Numerical modeling of hypolimnetic oxygenation by electrolysis of water
Thermal Science
eutrophication
electrolysis
oxygenation
numerical model
author_facet Jaćimović Nenad M.
Hosoda Takashi
Park Ho-Dong
Ivetić Marko V.
author_sort Jaćimović Nenad M.
title Numerical modeling of hypolimnetic oxygenation by electrolysis of water
title_short Numerical modeling of hypolimnetic oxygenation by electrolysis of water
title_full Numerical modeling of hypolimnetic oxygenation by electrolysis of water
title_fullStr Numerical modeling of hypolimnetic oxygenation by electrolysis of water
title_full_unstemmed Numerical modeling of hypolimnetic oxygenation by electrolysis of water
title_sort numerical modeling of hypolimnetic oxygenation by electrolysis of water
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2017-01-01
description The paper presents a novel method for hypolimnetic oxygenation by electrolysis of water. The performance of the method is investigated by the laboratory and the field experiment. The laboratory experiment is conducted in a 90 L vessel, while the field experiment is conducted at the lake Biwa in Japan. In order to provide a better insight into involved processes, a numerical model for simulation of bubble flow is developed with consideration of gas compressibility and oxygen dissolution. The model simultaneously solves 3-D volume averaged two-fluid governing equations. Developed model is firstly verified by simulation of bubble flow experiments, reported in the literature, where good qualitative agreement between measured and simulated results is observed. In the second part, the model is applied for simulation of conducted water electrolysis experiments. The model reproduced the observed oxygen concentration dynamics reasonably well. [Project of the Serbian Ministry of Education, Science and Technological Development, Grant no. 37009]
topic eutrophication
electrolysis
oxygenation
numerical model
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2017/0354-98361600190J.pdf
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