A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali

The objective of this project is to present the concept design stage of a buoy. The buoy is the structure which is floating on the sea surface has been used for several applications measuring oceanographic, meteorically, chemical and biological parameters. The buoy is also used to show the direction...

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Main Authors: Ibrahim, Muhammad Umarul Asyraf, Rozali, Rohaizad Hafidz
Format: Conference or Workshop Item
Language:English
Published: 2019
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/51713/1/51713.pdf
https://ir.uitm.edu.my/id/eprint/51713/
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Institution: Universiti Teknologi Mara
Language: English
id my.uitm.ir.51713
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spelling my.uitm.ir.517132022-02-25T08:45:20Z https://ir.uitm.edu.my/id/eprint/51713/ A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali Ibrahim, Muhammad Umarul Asyraf Rozali, Rohaizad Hafidz TC Hydraulic engineering. Ocean engineering The objective of this project is to present the concept design stage of a buoy. The buoy is the structure which is floating on the sea surface has been used for several applications measuring oceanographic, meteorically, chemical and biological parameters. The buoy is also used to show the direction of the sea route to ship during sailing. Generally, the conventional material of buoy is steel. Steel buoy has many advantages such as high strength and easy manufacturing using cutting and welding process to take shape. However, it can lead to marine pollution due to steel corrosion and maintenance cost due to its heavy weight. To overcome this problem, Wave scan buoy using polyethylene which is light and environmentally friendly are developed. The design and application of Wave scan buoy for a deep water tsunami detection system for Malaysia are discussed. The Wave scan superstructure shape was chosen for reference. In this study, the researchers will design the buoy from existing design body to the modular type concept design. The concept design includes the principal dimensions and identifies all major design trade-offs. Concept design process example was carried out using Computer Aided Design (CAD) software to speed up the design process. The concept design determines whether the modular buoy can be a feasible design to continue development in the preliminary design stage. The intent of the concept design is to provide the designer to resolve all design trade-offs. The sooner you resolve the major design trade-offs, the less work you will have to do to complete the design and the more successful it will be. 2019 Conference or Workshop Item PeerReviewed text en https://ir.uitm.edu.my/id/eprint/51713/1/51713.pdf ID51713 Ibrahim, Muhammad Umarul Asyraf and Rozali, Rohaizad Hafidz (2019) A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali. In: 4th Undergraduate Seminar on Built Environment and Technology 2019, 12th June 2019, Universiti Teknologi Mara Perak Branch.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic TC Hydraulic engineering. Ocean engineering
spellingShingle TC Hydraulic engineering. Ocean engineering
Ibrahim, Muhammad Umarul Asyraf
Rozali, Rohaizad Hafidz
A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali
description The objective of this project is to present the concept design stage of a buoy. The buoy is the structure which is floating on the sea surface has been used for several applications measuring oceanographic, meteorically, chemical and biological parameters. The buoy is also used to show the direction of the sea route to ship during sailing. Generally, the conventional material of buoy is steel. Steel buoy has many advantages such as high strength and easy manufacturing using cutting and welding process to take shape. However, it can lead to marine pollution due to steel corrosion and maintenance cost due to its heavy weight. To overcome this problem, Wave scan buoy using polyethylene which is light and environmentally friendly are developed. The design and application of Wave scan buoy for a deep water tsunami detection system for Malaysia are discussed. The Wave scan superstructure shape was chosen for reference. In this study, the researchers will design the buoy from existing design body to the modular type concept design. The concept design includes the principal dimensions and identifies all major design trade-offs. Concept design process example was carried out using Computer Aided Design (CAD) software to speed up the design process. The concept design determines whether the modular buoy can be a feasible design to continue development in the preliminary design stage. The intent of the concept design is to provide the designer to resolve all design trade-offs. The sooner you resolve the major design trade-offs, the less work you will have to do to complete the design and the more successful it will be.
format Conference or Workshop Item
author Ibrahim, Muhammad Umarul Asyraf
Rozali, Rohaizad Hafidz
author_facet Ibrahim, Muhammad Umarul Asyraf
Rozali, Rohaizad Hafidz
author_sort Ibrahim, Muhammad Umarul Asyraf
title A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali
title_short A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali
title_full A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali
title_fullStr A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali
title_full_unstemmed A concept design stage of modular buoy / Muhammad Umarul Asyraf Ibrahim and Rohaizad Hafidz Rozali
title_sort concept design stage of modular buoy / muhammad umarul asyraf ibrahim and rohaizad hafidz rozali
publishDate 2019
url https://ir.uitm.edu.my/id/eprint/51713/1/51713.pdf
https://ir.uitm.edu.my/id/eprint/51713/
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