DESIGN AND CONSTRUCTION OF VERTICAL HELIX SAVONIUS WIND TURBINE FOR PUBLIC STREET LIGHTING

Authors

  • Sagita Rochman Universitas PGRI Adi Buana Surabaya
  • Krishna Wijayakusuma Universitas PGRI Adi Buana Surabaya
  • Rivaldo Josua Jetrin Rolos University Of PGRI Adi Buana Surabaya

DOI:

https://doi.org/10.36456/best.vol4.no2.6158

Keywords:

Battery, Charge Controlle, Generator, Photocell, Helix Savonius.

Abstract

Wind power generator for lighting public roads in Tambakrejo Village, Sumbermanjing District, Malang Regency in order to minimize the level of traffic accidents. This power plant utilizes wind resources that blow to drive a wind turbine generator that will produce electrical energy. The use of wind to become electrical energy is designed from a vertical helix savonius type wind turbine as a medium for receiving wind gusts that will drive a generator to create electrical energy. The advantage of this helix savonius wind turbine can accommodate all cardinal directions because it has 2 blades that rotate 180. The role of the battery is to store electrical energy before it is distributed for public street lighting. Wind turbines or wind power plants are one of the renewable energy sources that are environmentally friendly and are starting to be widely developed at this time. In the storage and use of this electrical energy, it is very necessary to pay attention so that there is no overcharging / overcharge and excess usage / overdischarge. Therefore, the charge controller battery charging setting is used which will regulate charging or discharging. From the battery it will be connected to the Photocell for automatic control when it is dark and the light will turn on.

References

Adityo Putranto et al. 2011. Design of Vertical Wind Turbine for Household Lighting. Semarang.

Ahmad Farid. 2013. Optimization of the Savonius Wind Turbine Prototype with Variations in Gap and Change in Number of Blades. Pancasakti University, Tegal.

Alfianto, Achmad. "Solar Power Plant Planning with Tile Modification for Solar Panel Installation." BEST: Journal of Applied Electrical, Science, & Technology 3.2 (2021): 20-24.

Bilalodine and Sugito. 2010. Optimization of Wind Turbine Prototype Using Conjugate Gradient Method. Periodic Physics, Purwokerto.

Marizka Lustia Dewi. 2010. Analysis of Vertical Shaft Wind Turbine Work. Surakarta.

Ruzita Sumiati and Aidil Zamri. 2013. Design of Miniature Wind Turbine Power Generation for Learning Media. field.

Firmansyah, Fadli Jaya, Arman Suryono. 2014. Battery Charger System by Utilizing Wind Energy Sources For Battery Charging.

F. Eko Wismono Winarno. 2013. Potential HYBRID Power Generation Using Vertical Axis Wind Turbine Savonius type and Solar Panels.

Mochammad MR, et al., 2013. Wind Power Generation System Using Vertical Axis Windmills for Residential Loads. Ten November Institute of Technology, Surabaya

Pramana, Yanatra Budi, et al. "Manufacture of Solar Panel with 300W Inverter for Household Electricity Needs." Tibuana 5.01 (2022): 41-45.

Rudianto, Daniel T., 2013. Analysis of Savonius Wind Turbine Characteristics Using Initial Parameter Method. STTA Internal Research Report, Yogyakarta.

Rochman, Sagita, and Mochamad Taufiq Irvan Efendy. "Arduino Based Design of Horizontal Wind Power Generator for Coastal Road Lighting." BEST: Journal of Applied Electrical, Science, & Technology 3.1 (2021): 30-33.

Rochman, Sagita. "DESIGN OF VERTICAL AXIS SAVONIUS WINDMILL FOR GENERATING ELECTRICITY USING PERMANENT MAGNET." Tibuana 3.01 (2020): 61-66.

Rochman, Sagita, and Andy Hermawan. "Design and Construction of Screw Type Micro Hydro Power Plant." BEST: Journal of Applied Electrical, Science, & Technology 4.1 (2022): 21-26.

Sembodo, Budi Prijo. "Rancang Bangun Generator Turbin Angin Putaran Rendah Sebagai Pembangkit Energi Listrik Alternatif Di Daerah Pesisir." Wahana: Tridarma Perguruan Tinggi 70.1 (2018): 25-34.

Sujiwa, A., Atmiasri, A., & Purwanto, E. SISTEM KONTROL EFISIENSI DAYA OTOMATIS PADA PERANGKAT PROTOTIPE DESALINASI DUAL OUTPUT BERTENAGA SEL SURYA.

Sujiwa, A., & Santoso, I. (2022). Automatic Coffee Maker Machine Based on Internet of Things (IoT). BEST: Journal of Applied Electrical, Science, & Technology, 4(1), 1-1.

Sumiati, R., 2012. Testing of the Three Blade U Savonius Wind Turbine at the Freshwater Beach Location of Padang. Journal of Mechanical Engineering State Polytechnic Padang

Winarno, Adi, and Mahfud Affandi. "Design and Construction of Smart House Prototype Based Internet of Things (Iot) Using Esp8266." BEST: Journal of Applied Electrical, Science, & Technology 4.1 (2022): 11-14.

Zulfikar et al., 2011. Experimental study of the effect of the number of blades on the torque and rotation of the Savonius Type U turbine. Journal of Mechanical Engineering State Polytechnic Padang

Downloads

Published

28-11-2022

Issue

Section

Contents of the Journal

How to Cite

Rochman, Sagita, et al. “DESIGN AND CONSTRUCTION OF VERTICAL HELIX SAVONIUS WIND TURBINE FOR PUBLIC STREET LIGHTING”. Best : Journal of Applied Electrical, Science and Technology, vol. 4, no. 2, Nov. 2022, pp. 47-50, https://doi.org/10.36456/best.vol4.no2.6158.