Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT

The purpose of this study is to perform the techno-economic analysis of photovoltaic system utilization for lighting and cooling of Ferry Ro/Ro 500 GT. The world is facing a dilemma of increasing dependence on fossil energy with decreasing supply. This situation must be anticipated by all sectors by...

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Main Authors: Faturachman Danny, Yandri Erkata, Tri Pujiastuti Endang, Anne Olga, Hendroko Setyobudi Roy, Yani Yahya, Susanto Herry, Purba Washington, Krido Wahono Satriyo
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/02/e3sconf_icon-beat2019_00012.pdf
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spelling doaj-63b3234c1b26490da627719efe82ffb72021-01-15T10:18:49ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012260001210.1051/e3sconf/202122600012e3sconf_icon-beat2019_00012Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GTFaturachman Danny0Yandri ErkataTri Pujiastuti Endang1Anne Olga2Hendroko Setyobudi RoyYani Yahya3Susanto HerryPurba WashingtonKrido Wahono Satriyo4Department Marine Engineering, Faculty of Ocean Technology, Darma Persada UniversityDepartment Management, Faculty of Economic, Darma Persada UniversityDepartment of Natural Sciences, Faculty of Marine Technology and Natural Sciences of Klaipeda UniversityDepartment of Built Environment and Energy Technology, Faculty of Technology, Linnaeus UniversityResearch Division for Natural Product Technology – Indonesian Institute of SciencesThe purpose of this study is to perform the techno-economic analysis of photovoltaic system utilization for lighting and cooling of Ferry Ro/Ro 500 GT. The world is facing a dilemma of increasing dependence on fossil energy with decreasing supply. This situation must be anticipated by all sectors by energy efficiency (EE) and utilizing renewable energy (RE). Especially for RE in the transportation sector, ships as consumers of oil energy can also take advantage of solar energy sources, for example for lighting and cooling. For that purpose, five steps must be taken. First, determine the design specifications. Second, determine the specifications of components of the PV system. Third, calculate the power required for lighting equipment. Fourth, calculate the power required for the cooling system. Fifth, make an investment comparison for propulsion systems between diesel engines and photovoltaic systems. The results show that the energy required for lighting and cooling system as well as for propulsion systems can be placed in the deck area of 148.8 m2 for all system components, such as; PV modules, charge controllers, batteries, and inverter. This study can provide an overview of the use of PV system in designing the environmentally new or renovation ships.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/02/e3sconf_icon-beat2019_00012.pdfgreen transportationenergy savingsolar energyenergy dilemmaship design
collection DOAJ
language English
format Article
sources DOAJ
author Faturachman Danny
Yandri Erkata
Tri Pujiastuti Endang
Anne Olga
Hendroko Setyobudi Roy
Yani Yahya
Susanto Herry
Purba Washington
Krido Wahono Satriyo
spellingShingle Faturachman Danny
Yandri Erkata
Tri Pujiastuti Endang
Anne Olga
Hendroko Setyobudi Roy
Yani Yahya
Susanto Herry
Purba Washington
Krido Wahono Satriyo
Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT
E3S Web of Conferences
green transportation
energy saving
solar energy
energy dilemma
ship design
author_facet Faturachman Danny
Yandri Erkata
Tri Pujiastuti Endang
Anne Olga
Hendroko Setyobudi Roy
Yani Yahya
Susanto Herry
Purba Washington
Krido Wahono Satriyo
author_sort Faturachman Danny
title Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT
title_short Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT
title_full Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT
title_fullStr Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT
title_full_unstemmed Techno-Economic Analysis of Photovoltaic Utilization for Lighting and Cooling System of Ferry Ro/Ro Ship 500 GT
title_sort techno-economic analysis of photovoltaic utilization for lighting and cooling system of ferry ro/ro ship 500 gt
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The purpose of this study is to perform the techno-economic analysis of photovoltaic system utilization for lighting and cooling of Ferry Ro/Ro 500 GT. The world is facing a dilemma of increasing dependence on fossil energy with decreasing supply. This situation must be anticipated by all sectors by energy efficiency (EE) and utilizing renewable energy (RE). Especially for RE in the transportation sector, ships as consumers of oil energy can also take advantage of solar energy sources, for example for lighting and cooling. For that purpose, five steps must be taken. First, determine the design specifications. Second, determine the specifications of components of the PV system. Third, calculate the power required for lighting equipment. Fourth, calculate the power required for the cooling system. Fifth, make an investment comparison for propulsion systems between diesel engines and photovoltaic systems. The results show that the energy required for lighting and cooling system as well as for propulsion systems can be placed in the deck area of 148.8 m2 for all system components, such as; PV modules, charge controllers, batteries, and inverter. This study can provide an overview of the use of PV system in designing the environmentally new or renovation ships.
topic green transportation
energy saving
solar energy
energy dilemma
ship design
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/02/e3sconf_icon-beat2019_00012.pdf
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