Design and Analysis of Solar Water Pump Systems for Hydroponic Agriculture

Firman Ferdiansyah(1), Kardiman Kardiman(2), Ujiburrahman Ujiburrahman(3),


(1) Universitas Singaperbangsa Karawang
(2) Universitas Singaperbangsa Karawang
(3) Universitas Singaperbangsa Karawang
Corresponding Author

Abstract


This study aims to analyze the effect of the angle of the solar panel on the intensity of sunlight and the pump water discharge. The experiment was conducted in variable angles of 10, 20, 30, and 40 degrees, with a 240WP solar panel and a 12V 100Ah battery as a support for the installation. Data was taken at 09.00 to 15.00 WIB. The results of the study showed that the angle of inclination determines the optimization of energy absorbed by the solar panel to produce electricity which is then used to turn on the water pump which aims to distribute nutrients and water distribution in the hydroponic plant cycle, data obtained at an angle of 10 degrees the intensity of the discharge that can be run by the pump is 16.65 liters per minute, while at an angle of 20 degrees the pump intensity is 18.61 liters per minute, then at an angle of 30 degrees with the intensity of the water pump flowing nutrients to the plants with a value of 18.78 liters per minute, and at an angle of 40 degrees the pump can run with an intensity of 21.91 liters per minute, where the results of the four angles greatly affect the results of sunlight and weather conditions at the time of the study. The implication of this study is the potential to increase the rate of water discharge for the distribution of nutrients and water can be maintained at a constant flow by optimizing the duration of sunlight. However, further analysis is needed to understand the intensity of sunlight and weather conditions that often change and are uncertain. Suggestions for further research are to create simulations with certain software to get better results in the field, and to calibrate the instrument used with more accurate data results.


Keywords


Solar Panels, Tilt Angle, Water Discharge, Water Pumps, Mechanical Engineering

References


J.-S. Park and K. Kurata, “Application of Microbubbles to Hydroponics Solution Promotes Lettuce Growth,” Horttechnology, vol. 19, no. 1, pp. 212–215, Jan. 2023, doi: 10.21273/horttech.19.1.212.

Mardiyono, A. Sugeng, E. Wasito, and S. Handoko, “Pemanfaatan Teknologi Konversi Energi Surya Untuk Hidroponik Pada Smp Alam Ar Ridho,” J. DIANMAS, vol. 7, no. 1, pp. 19–26, 2018, [Online]. Available: http://www.jurnaldianmas.org/index.php/Dianmas/article/view/82

N. R. Mohamad, “Development of Aquaponic System using Solar Powered Control Pump,” IOSR J. Electr. Electron. Eng., vol. 8, no. 6, pp. 01–06, 2013, doi: 10.9790/1676-0860106.

I. M. A. Nugraha, F. Luthfiani, G. Sotyaramadhani, M. A. Idrus, K. Tambunan, and M. Samusamu, “Pendampingan Teknis Pemasangan dan Perawatan Pembangkit Listrik Tenaga Surya di Desa Tablolong Nusa Tenggara Timur,” Rengganis J. Pengabdi. Masy., vol. 1, no. 2, pp. 97–107, 2021, doi: 10.29303/rengganis.v1i2.89.

A. Rahayuningtyas, S. I. Kuala, and I. F. Apriyanto, “STUDI PERANCANGAN SISTEM PEMBANGKIT LISTRIK TENAGA SURYA (PLTS) SKALA RUMAH SEDERHANA DI DAERAH PEDESAAN SEBAGAI PEMBANGKIT LISTRIK ALTERNATIF UNTUK MENDUKUNG PROGRAM RAMAH LINGKUNGAN DAN ENERGI TERBARUKAN,” 2014. [Online]. Available: https://api.semanticscholar.org/CorpusID:109188734

S. Sirait, S. K. Saptomo, and M. Y. J. Purwanto, “Rancang Bangun Sistem Otomatisasi Irigasi Pipa Lahan Sawah Berbasis Tenaga Surya,” J. Irig., vol. 10, no. 1, p. 21, 2015, doi: 10.31028/ji.v10.i1.21-32.

F. Dinegoro, R. Rusnam, and E. G. Ekaputra, “Rancang Bangun Hidroponik Dengan Bantuan Pompa Bertenaga Surya,” J. Tek. Pertan. Lampung (Journal Agric. Eng., vol. 10, no. 3, p. 367, 2021, doi: 10.23960/jtep-l.v10i3.367-379.

Tim Sekretaris Jenderal Dewan Energi Nasional, “Indonesia Energy Out Look 2019,” J. Chem. Inf. Model., vol. 53, no. 9, pp. 1689–1699, 2019.

A. Teja, A. Tjok, and I. W. A. Wijaya, “Perbandingan Penggunaan Motor DC Dengan AC Sebagai Penggerak Pompa Air Yang Disuplai Oleh Sistem Pembangkit Listrik Tenaga Surya ( PLTS ),” 2013, pp. 14–15. [Online]. Available: https://api.semanticscholar.org/CorpusID:109170423G. C. Rumbajan Evan, “Rancang Bangun Penggerak Pompa Air Menggunakan Solar Panel Untuk Hidroponik,” J. Tek. Elektro, Univ. Sam Ratulangi, pp. 5–24, 2021.

Y. Hananto, Z. Ulma, A. T. Zain, M. Joko Wibowo, and R. E. Rachmanita, “Penerapan Teknologi Pompa Irigasi Pertanian Bertenaga Surya di Desa Dukuhdempok Kecamatan Wuluhan Kabupaten Jember,” J. Community Dev., vol. 4, no. 1, pp. 18–26, 2023, doi: 10.47134/comdev.v4i1.126.

R. Sigalingging and P. Honora, “Utilization of solar power as DC water pump movement in hydroponic plants,” IOP Conf. Ser. Earth Environ. Sci., vol. 260, no. 1, 2019, doi: 10.1088/1755-1315/260/1/012038.

Y. Islamiati, T. Dewi, and Rusdianasari, “IoT Monitoring for Solar Powered Pump Applied in Hydroponic House,” Int. J. Res. Vocat. Stud., vol. 2, no. 2, pp. 22–30, 2022, doi: 10.53893/ijrvocas.v2i2.102.

S. Suhendar, DASAR – DASAR PERENCANAAN PEMBANGKIT LISTRIK TENAGA SURYA. Tangerang: MEDIA EDUKASI INDONESIA, 2022.

M. S. ing. Bagus Ramadhani, Instalasi Pembangkit Listrik Tenaga Surya Dos & Don’ts. Jakarta: Deutsche Gesellschaft für Internationale Zusammenarbeit (GIZ) GmbH Energising Development (EnDev) Indonesia, 2018. [Online]. Available: https://ebtke.esdm.go.id/post/2018/08/31/2007/buku.panduan.instalasi.pembangkit.listrk.tenaga.surya

S. Hamid, J. Jamaaluddin, D. H. R. Saputra, and A. Wisaksono, “Analysis of DC MCB Usage Characteristics for AC and DC Load Usage,” Procedia Eng. Life Sci., vol. 2, no. 2, pp. 3–8, 2022, doi: 10.21070/pels.v2i2.1243.

S. Harahap and M. I. Fakhrudin, “Perancangan Pompa Sentrifugal Untuk Water Treatment Plant Kapasitas 0.25 M3/S Pada Kawasan Industri Karawang,” Semin. Nas. Sains dan Teknol., pp. 1–9, 2018, [Online]. Available: jurnal.umj.ac.id/index.php/semnastek


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DOI: 10.57235/jetish.v3i2.3391

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