Perancangan Tenaga Air Tenaga Surya
Keywords:
Panel Surya, Pompa Air, Energi Terbarukan, Debit Air, Kapasitas BateraiAbstract
The sun is a source of energy that is abundant, non-polluting and renewable. However, its use as renewable energy is still not optimal, while energy needs continue to increase along with developments in technology and human population. This research designs and tests a solar-powered water pump system as an alternative energy solution. The system is calculated using technical formulas for solar panel power, battery capacity and pump power consumption. Tests were carried out to measure the efficiency of solar panels and water discharge. As a result, the system was successfully implemented with a water flow of 33 liters. The highest solar panel power of 11.07 W and pump power consumption of 10.85 W was achieved at 13:20-14:00 WIB when the light intensity was optimal. This system proves the effectiveness of solar energy as a renewable energy solution, especially in areas with high light intensity.
References
[1] T. Adityo, “Tugas akhir uji kinerja pompa air tenaga surya dengan,” Progr. Stud. Tek. mesin, Fak. Teknol. Ind. Univ. nahdlatul ulama al ghazali cilacap, vol. 3, hal. 1–50, 2024.
[2] H. Fathuddin, “Bangun Sistem Pengisian Baterai 12V/5Ah dengan Panel Surya Monocrystalline dan Metoda MPPT Perturb & Observe Berbasis Atmega 16,” J. Elektron. List. dan Teknol. Inf. Terap., vol. 2, no. 2, hal. 318, 2017.
[3] A. B. Primawan dan I. Iswanjono, “Sistem Pompa Air Tenaga Surya: Pemanfaatan Energi Surya Untuk Penyediaan Air Bersih Dusun Karang, Gunung Kidul,” ABDIMAS ALTRUIS J. Pengabdi. Kpd. Masy., vol. 2, no. 1, hal. 38–43, 2019, doi: 10.24071/aa.v2i1.2127.
[4] Kadek, D. Satya, dan A. Darma, “Analisis Dan Monitoring Sistem Pompa Irigasi Dengan Pembangkit Listrik Tenaga Surya (Plts) Berbasis Aplikasi,” Politek. negeri bali, vol. 4, hal. 1–28, 2022.
[5] N. L. Mauliddiyah, “Studi ekonomi perencanaan pompa air tenaga surya sebagai pemenuhan kebutuhan air,” Jur. Tek. elektro Fak. Tek. Univ. tidar, vol. 1–44, hal. 6, 2021.
[6] Wiguna dan A. W. Adhi, “Analisis Perbandingan Performansi Sistem Pembangkit Listrik Tenaga Surya Statis Dan Tracking Sistem,” Tek. Mesin Unisma, hal. 5–23, 2022.
[7] T. Junaedi, “Rancang Bangun Pompa Air Tenaga Surya Dengan Switch Remote Control Wireless,” Tek. mesin Univ. NU al ghazali, vol. 7, hal. 1–76, 2022.
[8] Choi Hermanu Brillianto Apribowo, T. E. S, dan M. Anwar, “Prototype Sistem Pompa Air Tenaga Surya Untuk Meningkatkan Produktivitas Hasil Pertanian,” J. Abdimas, vol. 21, no. 2, hal. 97–102, 2017.
[9] R. Adolph, “Spesifikasi Baterai Untuk Pompa Air Tenaga Surya,” Tek. elektro Univ. padjadjaran jatinangor, vol. 4, hal. 7–23, 2016.
[10] F. Saputra, “Kinerja Pompa Air DC Berdasarkan Intensitas Tenaga Surya,” Jur. Tek. Elektro Fak. Tek. Univ. Muhammadiyah Surakarta, vol. 1, no. 2, hal. 3–4, 2015.
[11] T. Pipit Muliyah, Dyah Aminatun, Sukma Septian Nasution, Tommy Hastomo, Setiana Sri Wahyuni Sitepu, “Bab II Landasan Teori,” J. GEEJ, vol. 7, no. 2, hal. 7–30, 2020.
[12] Sulanjari dan J. Setiyono, “Studi Analisis Kinerja Pompa Air Dengan,” Teknobiz, vol. 10, no. 3, hal. 45–54.
[13] R. Adi Rezkyanto, “Penentuan Kapasitas Sel Surya Dan Baterai Terhadap Karakteristik Beban Listrik,” Univ. Muhammadiyah, vol. 3, hal. 1–19, 2019.
[14] H. Hasan, “Perancangan Pembangkit Listrik Tenaga Surya Di Pulau Saugi,” J. Ris. dan Teknol. Kelaut., vol. 10, hal. 169–180, 2012.
[15] H. Magribi dan K. Kunaifi, “Merancang Pompa Air Tenaga Surya pada Perkebunan Semangka,” Briliant J. Ris. dan Konseptual, vol. 7, no. 3, hal. 815, 2022, doi: 10.28926/briliant.v7i3.1022.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Sutrisno Sutrisno, Hary Witjahjo, Muhammad Fiandra Saputra

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