• editor@ijmra.in
  • ISSN[Online] : 2643-9875  ||  ISSN[Print] : 2643-9840

VOLUME 06 ISSUE 05 MAY 2023

Development of Vertical Axis Wind Turbine Charger as Alternative Power Source
Reymundo M. Maggay
Isabela State University
DOI : https://doi.org/10.47191/ijmra/v6-i5-12

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ABSTRACT:

The study was focused on the development of Vertical Axis Wind Turbine Charger with D.C Air Compressor to address power shortage in the coastal area in the Province of Isabela. This project development research tried to achieve the following objectives; a) Design and Construct Vertical Axis Wind Turbine Charger with D.C Air Compressor; b) Test the functionality of the project by conducting various activities concerning to basic electrical and electronics circuits, blade adjustment and experiments; c) Determine the acceptability of the project in terms of functionality, workability, durability, safety and instructional applicability as evaluated by the respondents; and d) Make an activity manual to supplement the developed project.
The five-point’s Likert’s scale was used to determine the descriptive meaning of the indicators of the variables used. Furthermore, the Weighted Average Mean (WAM) was used to interpret the equivalent meaning of the data gathered. The Analysis of Variance (ANOVA) was employed to determine the significant difference between the evaluations of the respondents. The completed project was evaluated by selected twenty (20) technology instructors 25 students, ten (10) Engineers from Isabela State University-Ilagan, Roxas, San Mateo, Cauayan Campus and TESDA Ilagan
Evaluation result shows that the project obtained an overall mean of 4.52 which means the Vertical Axis Wind Turbine Charger is “HIGHLY ACCEPTABLE” to the evaluators based on the criteria of functionality, aesthetics, workability, durability, economy, safety and instructional applicability.

REFERENCES

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2) Bernaldez (2016) “Multi-Purpose Electrical Trainer”, Marikina Polytechnic College, Sta Elena Marikina City

3) Canceran, Romeo (2019) “Improvised Solar-Powered Multi-Purpose Operational Amplifier and Trainer Board”, Marikina Polytechnic College, Sta Elena Marikina City

4) Caluya, Junar (2015) “Development of Telluric Current Device”, Isabela State University-Ilagan Campus, Ilagan Isabela

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6) Delos Santos, Angelica A. (2017) “Renewable Energy in the Philippines”, Department of Energy Philippines

7) Gulve P. Dr. Barve S.B (2014)” Design and Construction of Vertical Axis Wind Turbine”, MIT College of Engineering, Pune, India

8) Hernandez (2016) “Improvised Solar Power Electrical Trainer”, Marikina Polytechnic College, Sta Elena Marikina City

9) Möllerström, Erik” (2015) “Vertical Axis Wind Turbine Tower Dynamics and Noise” Uppsala University.Sweden

10) Nikam D.A, Kherde S.M (2015) Literature Review on Design and Development of Vertical Axis Wind Turbine” Dr. Sau Kamalatai Gawaii Institute of Engineering & Technolgy, Darapur, India

11) Velasco, Reymund (2018)” Customized Multi Purposed Photovoltaic Powered Device with Automatic Transfer Switch”, Isabela State University-Ilagan Campus, Ilagan Isabela

12) Vivek C.M Gopikrishnan P. et al (2017)” A review on Vertical and Horizontal Axis Wind Turbine”,Perijar Maniammai University, Thanjaur, India

13) Sakamoto et. al (2019) “Nikkei Asian Review Tokyo/Manila”, Tokyo Japan

14) Other Sources

15) Journal

16) Añonuevo (2014) at Inter Aksyon.com

17) Internet Websites

18) http:// www.wikepedia.com

19) http:// www.electronics lab.ph

VOLUME 06 ISSUE 05 MAY 2023

There is an Open Access article, distributed under the term of the Creative Commons Attribution – Non Commercial 4.0 International (CC BY-NC 4.0) (https://creativecommons.org/licenses/by-nc/4.0/), which permits remixing, adapting and building upon the work for non-commercial use, provided the original work is properly cited.


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