Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior

In this paper, an attempt has been made to assess how effective waste-collecting uses the conveyor wing. This wing-equipped conveyor will later be installed in front of the ship. In this work, a simulation model is a conveyor and wing without the ship. A numerical investigation based on Reynolds Ave...

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Autores principales: Sugianto Erik, Horng-Chen Jeng, Purba Noir P.
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FR
Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/85dda47b74a543dbb5ce78fea93e8f4d
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spelling oai:doaj.org-article:85dda47b74a543dbb5ce78fea93e8f4d2021-12-02T17:11:45ZNumerical investigation of conveyor wing shape type effect on ocean waste collection behavior2267-124210.1051/e3sconf/202132401005https://doaj.org/article/85dda47b74a543dbb5ce78fea93e8f4d2021-01-01T00:00:00Zhttps://www.e3s-conferences.org/articles/e3sconf/pdf/2021/100/e3sconf_macific2021_01005.pdfhttps://doaj.org/toc/2267-1242In this paper, an attempt has been made to assess how effective waste-collecting uses the conveyor wing. This wing-equipped conveyor will later be installed in front of the ship. In this work, a simulation model is a conveyor and wing without the ship. A numerical investigation based on Reynolds Averaged Navier Stokes (RANS) for predicting the flow pattern characteristics, velocity contour, and resistance. The focus of the present study is the impact of wing shape on waste collection in calm water through the application of numerical methods. The three variations of wing shape used are solid wing shape, square hollow wing shape, and circle hollow wing shape. It is done using speed variations of 1 to 12 knots. From the analysis of velocity contour, circle hollow wing is faster in collecting waste, then followed by hollow square wing and solid wing. From the flow pattern analysis, the circle hollow wing model is easier to make ocean waste come closer to the winged conveyor than the square wing and solid wing model. It is known that winged conveyors can only be used to collect ocean waste at low speeds. Then based on resistance comparison, it is also known that the resistance of winged conveyors from the largest to the smallest is the solid wing, hollow circle wing, and hollow square wing, respectively.Sugianto ErikHorng-Chen JengPurba Noir P.EDP SciencesarticleEnvironmental sciencesGE1-350ENFRE3S Web of Conferences, Vol 324, p 01005 (2021)
institution DOAJ
collection DOAJ
language EN
FR
topic Environmental sciences
GE1-350
spellingShingle Environmental sciences
GE1-350
Sugianto Erik
Horng-Chen Jeng
Purba Noir P.
Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
description In this paper, an attempt has been made to assess how effective waste-collecting uses the conveyor wing. This wing-equipped conveyor will later be installed in front of the ship. In this work, a simulation model is a conveyor and wing without the ship. A numerical investigation based on Reynolds Averaged Navier Stokes (RANS) for predicting the flow pattern characteristics, velocity contour, and resistance. The focus of the present study is the impact of wing shape on waste collection in calm water through the application of numerical methods. The three variations of wing shape used are solid wing shape, square hollow wing shape, and circle hollow wing shape. It is done using speed variations of 1 to 12 knots. From the analysis of velocity contour, circle hollow wing is faster in collecting waste, then followed by hollow square wing and solid wing. From the flow pattern analysis, the circle hollow wing model is easier to make ocean waste come closer to the winged conveyor than the square wing and solid wing model. It is known that winged conveyors can only be used to collect ocean waste at low speeds. Then based on resistance comparison, it is also known that the resistance of winged conveyors from the largest to the smallest is the solid wing, hollow circle wing, and hollow square wing, respectively.
format article
author Sugianto Erik
Horng-Chen Jeng
Purba Noir P.
author_facet Sugianto Erik
Horng-Chen Jeng
Purba Noir P.
author_sort Sugianto Erik
title Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
title_short Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
title_full Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
title_fullStr Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
title_full_unstemmed Numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
title_sort numerical investigation of conveyor wing shape type effect on ocean waste collection behavior
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/85dda47b74a543dbb5ce78fea93e8f4d
work_keys_str_mv AT sugiantoerik numericalinvestigationofconveyorwingshapetypeeffectonoceanwastecollectionbehavior
AT horngchenjeng numericalinvestigationofconveyorwingshapetypeeffectonoceanwastecollectionbehavior
AT purbanoirp numericalinvestigationofconveyorwingshapetypeeffectonoceanwastecollectionbehavior
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