Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants

In this study, a method for effectively estimating the airflow rate of the turbine of an oscillating water column (OWC) pilot plant was developed. The validity of the proposed method was verified through computational fluid dynamics simulations. The method was applied to estimate the airflow rate in...

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Autores principales: Sewan Park, Kilwon Kim, Jeong-Hwan Oh, Chang-Hyuk Lim, Ji-Yong Park, Keyyong Hong, Seung-Ho Shin
Formato: article
Lenguaje:EN
Publicado: MDPI AG 2021
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Acceso en línea:https://doaj.org/article/c44c99df9eed4ecbb8dcf69e658ec0f8
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spelling oai:doaj.org-article:c44c99df9eed4ecbb8dcf69e658ec0f82021-11-25T18:50:03ZEffective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants10.3390/pr91118842227-9717https://doaj.org/article/c44c99df9eed4ecbb8dcf69e658ec0f82021-10-01T00:00:00Zhttps://www.mdpi.com/2227-9717/9/11/1884https://doaj.org/toc/2227-9717In this study, a method for effectively estimating the airflow rate of the turbine of an oscillating water column (OWC) pilot plant was developed. The validity of the proposed method was verified through computational fluid dynamics simulations. The method was applied to estimate the airflow rate in irregular wave states based on the operation data obtained for the Yongsoo OWC pilot plant installed in the western seas of Jeju Island, South Korea. As an alternative to estimating the airflow rate of the OWC pilot plant, the impulse turbine performance chart-based interpolation method is introduced, and it is shown that the airflow rate time series calculated using the two methods were in good agreement.Sewan ParkKilwon KimJeong-Hwan OhChang-Hyuk LimJi-Yong ParkKeyyong HongSeung-Ho ShinMDPI AGarticleoscillating water columnwave energy converterCFDairflow rateChemical technologyTP1-1185ChemistryQD1-999ENProcesses, Vol 9, Iss 1884, p 1884 (2021)
institution DOAJ
collection DOAJ
language EN
topic oscillating water column
wave energy converter
CFD
airflow rate
Chemical technology
TP1-1185
Chemistry
QD1-999
spellingShingle oscillating water column
wave energy converter
CFD
airflow rate
Chemical technology
TP1-1185
Chemistry
QD1-999
Sewan Park
Kilwon Kim
Jeong-Hwan Oh
Chang-Hyuk Lim
Ji-Yong Park
Keyyong Hong
Seung-Ho Shin
Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants
description In this study, a method for effectively estimating the airflow rate of the turbine of an oscillating water column (OWC) pilot plant was developed. The validity of the proposed method was verified through computational fluid dynamics simulations. The method was applied to estimate the airflow rate in irregular wave states based on the operation data obtained for the Yongsoo OWC pilot plant installed in the western seas of Jeju Island, South Korea. As an alternative to estimating the airflow rate of the OWC pilot plant, the impulse turbine performance chart-based interpolation method is introduced, and it is shown that the airflow rate time series calculated using the two methods were in good agreement.
format article
author Sewan Park
Kilwon Kim
Jeong-Hwan Oh
Chang-Hyuk Lim
Ji-Yong Park
Keyyong Hong
Seung-Ho Shin
author_facet Sewan Park
Kilwon Kim
Jeong-Hwan Oh
Chang-Hyuk Lim
Ji-Yong Park
Keyyong Hong
Seung-Ho Shin
author_sort Sewan Park
title Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants
title_short Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants
title_full Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants
title_fullStr Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants
title_full_unstemmed Effective Method for Evaluating Airflow Rate of Oscillating-Water-Column Pilot Plants
title_sort effective method for evaluating airflow rate of oscillating-water-column pilot plants
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/c44c99df9eed4ecbb8dcf69e658ec0f8
work_keys_str_mv AT sewanpark effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
AT kilwonkim effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
AT jeonghwanoh effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
AT changhyuklim effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
AT jiyongpark effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
AT keyyonghong effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
AT seunghoshin effectivemethodforevaluatingairflowrateofoscillatingwatercolumnpilotplants
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