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ANALISIS PENGARUH VARIASI SUDUT KEMIRINGAN PANEL TERHADAP DAYA KELUARAN PANEL SURYA Sulanjari Sulanjari; Joko Setiyono; Muhammad Adha Rosyahna; Agustina Dyah Setyowati; Ade Irawan
Ensiklopedia of Journal Vol 5, No 3 (2023): Vol. 5 No. 3 Edisi 2 April 2023
Publisher : Lembaga Penelitian dan Penerbitan Hasil Penelitian Ensiklopedia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (455.526 KB) | DOI: 10.33559/eoj.v5i3.1663

Abstract

The purpose of this study was to determine the effect of the solar panel angle of a 50 wp solar panel on the output power with a variation of the angle of 200, 300, and 400. Data collection was repeated 3 times using drying time or heating solar cell panels for 6 hours (09.00-15.00 WIB) with intervals 30 minutes. The results of testing the installation of a solar power plant it can be concluded that the largest output power is on day 1 with a slope angle of 400 at 13:00 WIB with a value of 53.07 Watt, and the smallest output power is on day 2 with a slope angle of 300 at 15:00 WIB with a value of 3.03 Watt. And the greatest efficiency value is on day 1 with a slope angle of 200 at 12:30 WIB with a value of 17.52% and for the smallest efficiency value, namely on day 2 with a slope angle of 400 at 14:00 WIB with a value of 2 ,54%.Keywords: Solar panel angel, 50 wp, solar cell, output power,  efficiency.
PENGARUH JUMLAH SUDU TERHADAP UNJUK KERJA PADA PROTOTYPE TURBIN ANGIN TIPE SAVONIUS Joko Setiyono; Erlang Surya Budi Syahputra; Sulanjari Sulanjari; Agustina Dyah Setyowati; Ade Irawan
Ensiklopedia Research and Community Service Review Vol 5, No 3 (2026): Vol. 5 No. 3 Juni 2026
Publisher : Lembaga Penelitian dan Penerbitan Hasil Penelitian Ensiklopedia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33559/err.v5i3.3851

Abstract

The utilization of wind energy as a renewable source is continuously being developed to produce more efficient and environmentally friendly electricity. While most current turbines are horizontal-axis models, this research focuses on the design of Savonius-type Vertical Axis Wind Turbines (VAWT). Using models with 2, 3, and 4 blades constructed from 0.8 mm mild steel plates and a swept area of 80 cm × 80 cm. The wind speed used in this study is 4.3 m/s. The research results indicate that the 4-blade turbine produces the highest power output at 53.25 watts, with a turbine rotation speed of 195 rpmKeywords: Wind energy, wind turbine, Savonius vertical axis, electrical energy