Abstract :
Pemanfaatan energi angin buatan di Indonesia untuk saat ini sangat lah rendah namun mepunyai potensi, penyebab
salah satunya yaitu kecepatan angin hasil hembusan transportasi mencapai 2,5 m/s sampai 4 m/s tergolong
sangatlah rendah sehingga kesulitan menghasilkan energi listrik skala besar. Namun potensi pemanfaatan angin
tersebut sangatlah besar di karnakan hampir di sepanjang waktu transportasi melintas dikarnakan wilayah banjar
masin dan banjarbaru pada penduduk sehingga memungkinkan mengembangkan generator yang memerlukan
puratan rendah. Mengaplikasikan generator magnet permanen ke turbin angin savonius untuk memanfaatkan
henbusan angin buatan pada trotoar jalan. karya ilmiah ini merupakan penelitian eksperimen. Data di dapat
melalui observasi. Data yang di peroleh melalui wawancara dan membaca refrensi dengan resiko kegagalan
pembuatan. Hasil rotor mrmpunyai 4 kutup yang menggunakan magnet neodynium dengan ukuran 40x20x4 mm,
dan stator memiliki 9 slod setiap slod memiliki 72 belitan. Selama pengaplikasian, generator memiliki tingkat
kerugian 2 banding 1 putaran. Pengujian generator pada saat output menghasilkan rata-rata 3,6886 volt. Pengujian
selama 9 kali dalam kurun waktu 3 hari menunjukan bahwa generator magnet permanen bisa diaplikasikan turbin
angin savonius.
The use of artificial wind energy in Indonesia is currently very low but has potential, one of the causes is that the wind speed resulting from transportation gusts reaches 2.5 m/s to 4 m/s which is classified as very low so that it is difficult to produce large-scale electrical energy. However, the potential for the use of the wind is very large because almost all the time transportation passes due to the Banjar Masin and Banjarbaru areas for residents, making it possible to develop generators that require low velocity. Applying a permanent magnet generator to a savonius wind turbine to take advantage of artificial wind gusts on road pavements. This scientific work is an experimental research. The data can be obtained through observation. Data obtained through interviews and reading references with the risk of manufacturing failure. The result is that the rotor has 4 poles that use neodynium magnets with a size of 40x20x4 mm, and the stator has 9 slods, each slod has 72 windings. During application, the generator has a loss rate of 2 to 1 revolution. Testing the generator at the time of output produces an average of 3.6886 volts. Testing for 9 times in a period of 3 days shows that a permanent magnet generator can be applied to the Savonius wind turbine.