Design of Appropriate Technology Innovation for Alternators as Power Generating Equipment on Fishery Ship Size < 10 GT
DOI:
https://doi.org/10.52046/agrikan.v15i2.1231Keywords:
DC Motor, Alternator, Accumulator, Appropriate InnovationAbstract
Designing appropriate technological innovations on the dc motor used to drive the alternator and knowing the performance of the tool. The method used in the research is the experimental design method which includes several stages, namely : (1) requirements analysis, (2) system design, (3) tool making, and (4) tool performance testing. This tool works using DC motor propulsion by rotating the alternator, so that it can rotate to produce an electric voltage which is then stored in an accumulator electrical energy storage cell. Electrical energy stored in batteries (accumulators) can be used to power electronic equipment on fishing vessels >10 GT such as GPS navigation tools, fishfinder lights, simple ones that do not have too much electrical power. Based on the results of the 20-minute test that has been carried out, it can be concluded that this appropriate innovative alternative power generation system can work well at 2000 rpm to 3600 rpm and produce an average voltage of 14.63 volts and an average charging current. - an average of 2.5 amperes.
References
Alamsyah, F. (2017). Studi Kinerja Generator Pembangkit Listrik Tenaga Air Ubrug Sukabumi. Jurnal Online Mahasiswa (JOM) Bidang Teknik Elektro, 1(1).
Butcher, D. (2004). Pedal Powered Generator. article is undated—printed Jan, 26, 5.
Farisa, M. (2017). Pemanfaatan Dinamo Cas Mobil Sebagai Pembangkit Listrik (Doctoral dissertation, Politeknik Negeri Sriwijaya).
Ilham, H. (2012). Perancangan Ulang Alternator Mobil Menjadi Generator Sinkron Kecepatan Rendah. Fakultas Teknik Universitas Syiah Kuala Darussalam, Banda Aceh.
Kadir, A. (1995). Energi: Sumber daya, inovasi, tenaga listrik, dan potensi ekonomi. Penerbit Universitas Indonesia.
PS, W. (2013). Pembangkit Listrik dengan Potensi Sumber Energi Setempat sebagai Wujud Pemerataan Energi Listrik di Desa Tertinggal dan Terpencil.
Puspitoningrum, J. (2006). Komparasi Kekuatan Penyimpanan Energi Listrik Pada Akumulator Kering dan Basah Pada Tegangan 12 Volt. Universitas Negeri Semarang.
Ratnawati, D. (2016). Pengujian Aktivitas Analgesik Fraksi Etil Asetat Daun Jatropha Gossypifolia Pada Mencit (Mus Musculus) Dengan Metode Geliat (Writhing Test) (Doctoral Dissertation, University Of Muhammadiyah Malang).
Setiono, P. (2006). pemanfaatan Alternator Mobil Sebagai Pembangkit Listrik Tenaga Angin (Doctoral dissertation, Universitas Negeri Semarang).
Suryatmo, F. (1984). Teknik listrik motor & generator arus bolak-balik. Alumni.
Suwoto, G. (2019). Pembuatan Turbin Vortex Dengan Sudu Pipa Belah Tiga Dengan Sudut Kemiringan Sudu 45°. Eksergi, 14(3), 72-77.
Sumarjo, J., Purnomo, S. S., Bangsa, I. A., & Santoso, D. B. (2021). Implementasi Teknologi Kinetik Turbin Sebagai Penunjang Kebutuhan Energi Di Desa Tirtasari. Selaparang Jurnal Pengabdian Masyarakat Berkemajuan, 4(2), 393-399.
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Copyright (c) 2022 Wijatmika Wijatmika, Moch. Subroto Aliredjo, Dedy H. Sutisna

This work is licensed under a Creative Commons Attribution 4.0 International License.

This work is licensed under a Creative Commons Attribution 4.0 International License.







