American Journal of Energy Research
ISSN (Print): 2328-7349 ISSN (Online): 2328-7330 Website: https://www.sciepub.com/journal/ajer Editor-in-chief: Apply for this position
Open Access
Journal Browser
Go
American Journal of Energy Research. 2024, 12(3), 47-54
DOI: 10.12691/ajer-12-3-1
Open AccessCase Report

Design and Implementation of Portable Renewable Energy Booths for Generating Electricity and Solar Heat

Zohreh Hesami1, and Rahim Souzani21

1Environment and sustainable development department of Tehran municipality, Tehran, Iran

Pub. Date: September 28, 2024

Cite this paper:
Zohreh Hesami and Rahim Souzani2. Design and Implementation of Portable Renewable Energy Booths for Generating Electricity and Solar Heat. American Journal of Energy Research. 2024; 12(3):47-54. doi: 10.12691/ajer-12-3-1

Abstract

The purpose of designing and building a multi-purpose portable energy booth is to educate, empower, and promote the culture of using renewable energy among citizens and secondly to provide welfare and support services on special days and occasions. The shed and equipment were designed, supplied, and built based on the following policy. The booths should have an educational and exhibition mode so that it is ready to be visited by people, students, and other environmental enthusiasts. Booths can be moved to different parts of the country on days and occasions to provide services. Due to the limitation of the roof of the booths and also the equipment that consumes electricity in the booths, the construction of an off-grid solar power plant with 6 panels of 545 watts and 8 batteries of 100 ampere 12 volts and also a solar water heater of 250 liters to provide hot water for the bathroom inside the booths It was planned. The sum of the total consumption of the electrical equipment including Lamps, misting fan, freezer, 32-inch LED TV, water purifier Standing split, and Laptop in the booths during the day and night is equal to 9404 watts throughout the day and night (784 Ah per day). This amount is supplied by batteries. After the design and installation of the equipment to familiarize the people and also for the use of the residents in the conditions where there was no access to the water, electricity, and gas network, the condo was tested for 10 days and its defects were also fixed. The costs of fuel transportation and electricity transmission are much higher than the use of solar energy in the garage. Students are also taught about renewable energy from this facility.

Keywords:
portable booths renewable energy solar heat and electricity cultivation

Creative CommonsThis work is licensed under a Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/

References:

[1]  M.H. Heidarzadeh et al.: Principles to Promote Solar Energy at Urban Management (Case Study: Berlin & Tehran), journal of Energy Technology and policy, vol. 3, No. 9, 2013.
 
[2]  Mariah Awang et al.: A DESIGN OF PORTABLE MINI SOLAR PANEL COMBINED WITH MICRO HYDROPOWER SYSTEM FOR POWER GENERATION, Journal of Sustainable Technology and Applied Science (JSTAS), December 2021, 2(2):27-33.
 
[3]  David Keyson et al.: Designing a Portable and Low-Cost Home Energy Management Toolkit, the 3rd International Conference on Sustainable Energy Information Technology, June 2013.
 
[4]  Ibrahim Al-Bahadly: was Portable Multi-Inputs Renewable Energy System for Small Scale Remote Application, Journal of Power and Energy Engineering, February 2018, Vol.6 No.2.
 
[5]  H C Leindecker and D R Kugfarth: Mobile Tiny Houses – Sustainable and Affordable, IOP Conference Series Earth and Environmental Science, September 2019.
 
[6]  Pankaj G Takale et al.: REVIEW ON DESIGN AND MANUFACTURING OF THE PORTABLE AND FOLDABLE SOLAR PHOTOVOLTAIC SYSTEM FOR DOMESTIC USE, International Research Journal of Modernization in Engineering Technology and Science, Volume: 06/Issue: 04/April-2024.
 
[7]  Smita Joshi and Neha Upadhyaya: DESIGN OF SMALL SCALE SOLAR POWERED HOUSE, Conference: ICWSTCSE, At BVM Engineering College, Vallabh Vidyanagar, 2016.
 
[8]  Word bank Group: Portable Solar Power for Nomadic Herders, 2008, April 8.
 
[9]  Milad Soltani et al.: Design, fabrication and performance assessment of a novel portable solar-based poly-generation system, Renewable energy journal, Volume 202, Pages 699-71, January 2023.
 
[10]  N.H. Ramly et al.: Emergency portable solar power supply, International Journal of Engineering Technology and Science, vol. 6(2), 2019.
 
[11]  Olly Roy Chowdhury et al.: Solar Powered Portable Charging Unit as Emergency Response for Disaster Prone Areas, International Journal of Progressive Sciences and Technologies, Vol. 28, No. 2, 2021.
 
[12]  Hongye Pan et al.: A portable renewable solar energy-powered cooling system based on wireless power transfer for a vehicle cabin, Applied Energy Journal, Vol. 195,1, pages 334-343, 2017.
 
[13]  John Kimsfer Gozano et al.: Design of a solar-based portable power supply with modular battery system for the Dumagat Tribe in Norzagaray Bulacan, International Journal of Electrical and Electronics Research. 11, Issue 3, pp: (8-17), July - September 2023.
 
[14]  Ana Georginana Lupo et al.: SWOT analysis of the renewable energy sources in Romania, IOP conference science materials science and engineering, 147(1): 012138147(1):012138, 2016.
 
[15]  Anteneh Belog, The SWOT analyses solar energy in Ethiopia, Journal of Environmental Pollution and management, 2018.