Sinergi
Vol 27, No 3 (2023)

The model selection of propeller turbine construction using Analytical Hierarchy Process (AHP)

Dedi Wardianto (Department of Mechanical Engineering, Faculty of Engineering, Institut Teknologi Padang)
Mafrizal Mafrizal (Department of Mechanical Engineering, Faculty of Engineering, Sekolah Tinggi Teknologi Nasional)
Sufiyanto Sufiyanto (Department of Mechanical Engineering, Faculty of Engineering, Sekolah Tinggi Teknologi Nasional)
Rudi Kurniawan Arief (Department of Mechanical Engineering, Faculty of Engineering, Universitas Muhammadiyah Sumatera Barat)
Herry Agung Prabowo (Department of Magister of Industrial Engineering, Faculty of Engineering, Universitas Mercu Buana)
Irfan Hilmy (Department of Mechanical Engineering, Faculty of Engineering Technology and Science, Higher College of Technology, UAE)



Article Info

Publish Date
12 Sep 2023

Abstract

This study aimed to develop an innovative propeller turbine design to facilitate easy manufacturing and maintenance processes, leading to a reduction in costs. Furthermore, the Analytical Hierarchy Process (AHP) method was employed to identify the most optimal model and design for the propeller turbine. Problem-solving within the AHP framework was guided by three fundamental principles, namely decomposition, Comparative Judgment, and Logical Consistency. The procedure included problem decomposition, assessment/ weighting to compare elements, matrix preparation and consistency testing, setting priorities for each hierarchy, priority synthesis, and decision-making. To establish a benchmark, three types of propeller turbines currently available in the market served as references. Meanwhile, the selection criteria for the model were based on several factors, including power factor, time efficiency, ease of manufacture, as well as production and maintenance costs. Considering the criteria, modifications were made to these reference models, resulting in the development of alternatives, denoted as A, B, and C. The results showed that alternative type A as the most suitable choice for further development. Therefore, this particular design was granted foremost priority to develop a low-head generator that possessed ease of manufacturing and surpassed alternative models in terms of feasibility. 

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Journal Info

Abbrev

sinergi

Publisher

Subject

Civil Engineering, Building, Construction & Architecture Control & Systems Engineering Electrical & Electronics Engineering Engineering Industrial & Manufacturing Engineering

Description

SINERGI is a peer-reviewed international journal published three times a year in February, June, and October. The journal is published by Faculty of Engineering, Universitas Mercu Buana. Each publication contains articles comprising high quality theoretical and empirical original research papers, ...