PENGGUNAAN SOLAR SELL PADA POMPA AIR DC 12 V SUBMERSIBLE 280 W UNTUK SUMUR BOR 30 M

  • Sariman Sariman Universitas Sriwijaya Palembang Sumatera Selatan, Indonesia
  • M. Fauzan Deyhan Universitas Sriwijaya Palembang Sumatera Selatan, Indonesia
Keywords: Solar Cell, CD 12 V Water Pump, Bore Well

Abstract

Drilling wells are a way of extracting groundwater by sticking pipes into the ground to a certain depth. The purpose of this study is to analyze the energy performance of solar cells to operate water pumping machines in drilled wells, with the results of the analysis and design that are appropriate, then these needs can be fulfilled. The research method used is the development research method, namely developing the use of solar cells in submersible E 280W DC 12 V water pumps for 30 M drilled wells. The research site was conducted in Limbang Jaya Village, Tanjung Batu District, Ogan Ilir Regency. The research will be carried out in August 2022. The tools used are deep well drilling machines, drill pipes, drill bits, traveling blocks, water swivels, drill towers, and hoisting plugs. The effect of depth on DHL in dug wells is only 4% while the distance from the shoreline does not affect DHL in dug wells, the effect of depth on DHL in drilled wells is 37%.

Downloads

Download data is not yet available.

Author Biography

Sariman Sariman, Universitas Sriwijaya Palembang Sumatera Selatan, Indonesia

Universitas Sriwijaya Palembang Sumatera Selatan, Indonesia

References

Afdaliah, N., & Pristianto, H. (2019). Pemetaan Kualitas Air Sumur Bor Warga Kota Sorong. Jurnal Teknik Sipil : Rancang Bangun, 5(1). https://doi.org/10.33506/rb.v5i1.739

Akhmad, K. (2005). Pembangkit Listrik Tenaga Surya dan Penerapannya Untuk Daerah Terpencil. Pengkajian Dan Penerapan Teknologi Konversi Dan Konservasi Energi, 1(1).

Alifyanti, D. F., Tambunan, J. M., Jurusan Teknik Elektro, S. Plnj., & Jurusan Teknik Elektro, STT PLNJakarta, J. co. (2018). Pengaturan Tegangan Pembangkit Listrik Tenaga Surya(PLTS) 1000 WATT. Jurnal Kajian Teknik Elektro, 1(1).

Assadi, M. K., Bakhoda, S., Saidur, R., & Hanaei, H. (2018). Recent progress in perovskite solar cells. In Renewable and Sustainable Energy Reviews (Vol. 81). https://doi.org/10.1016/j.rser.2017.06.088

Fuadunnazmi, M., & Herayanti, L. (2016). INSTALASI BOTANICAL GARDEN FISHERY BERBANTUAN SOLAR CELL DI KOTA MATARAM PROVINSI NUSA TENGGARA BARAT. Lumbung Inovasi, 1(1).

Gil-Escrig, L., Roß, M., Sutter, J., Al-Ashouri, A., Becker, C., & Albrecht, S. (2021). Fully Vacuum-Processed Perovskite Solar Cells on Pyramidal Microtextures. Solar RRL, 5(1). https://doi.org/10.1002/solr.202000553

Green, M. A., Dunlop, E. D., Hohl-Ebinger, J., Yoshita, M., Kopidakis, N., & Hao, X. (2021). Solar cell efficiency tables (Version 58). Progress in Photovoltaics: Research and Applications, 29(7). https://doi.org/10.1002/pip.3444

Green, M. A., Dunlop, E. D., Hohl-Ebinger, J., Yoshita, M., Kopidakis, N., & Hao, X. (2022). Solar cell efficiency tables (version 59). Progress in Photovoltaics: Research and Applications, 30(1). https://doi.org/10.1002/pip.3506

Green, M. A., Hishikawa, Y., Warta, W., Dunlop, E. D., Levi, D. H., Hohl-Ebinger, J., & Ho-Baillie, A. W. H. (2017). Solar cell efficiency tables (version 50). Progress in Photovoltaics: Research and Applications, 25(7). https://doi.org/10.1002/pip.2909

Gunawan, L. A., Agung, A. I., Widyartono, M., & Haryudo, S. I. (2021). Rancang Bangun Pembangkit Listrik Tenaga Surya Portable. Jurnal Teknik Elektro, 10(1).

Herisajani, H., Nasrul, N., & Putra, Y. (2018). Merancang Panel Kontrol Untuk Pompa Air dan Motor Pengerak Solar Cell. Elektron : Jurnal Ilmiah, 6(1). https://doi.org/10.30630/eji.6.1.60

Hou, W., Xiao, Y., Han, G., & Lin, J. Y. (2019). The applications of polymers in solar cells: A review. In Polymers (Vol. 11, Issue 1). https://doi.org/10.3390/polym11010143

Kurniadi, Y U., et al. (2020). Nusantara ( Jurnal Ilmu Pengetahuan Sosial ). Nusantara: Jurnal Ilmu Pengetahuan Sosial, 7(2).

Lee, S. W., Bae, S., Kim, D., & Lee, H. S. (2020). Historical Analysis of High-Efficiency, Large-Area Solar Cells: Toward Upscaling of Perovskite Solar Cells. Advanced Materials, 32(51). https://doi.org/10.1002/adma.202002202

Maghfianti, A., Muid, A., & Zulfian, Z. (2020). PROTOTIPE SISTEM PENGOLAH OTOMATIS AIR SUMUR BOR MENGGUNAKAN MIKROKONTROLER ATMEGA 328P. PRISMA FISIKA, 8(1). https://doi.org/10.26418/pf.v8i1.39891

Manan, S. (2009). Energi Matahari, Sumber Energi Alternatif Yang Effisien, Handal Dan Ramah Lingkungan Di Indonesia. Gema Teknologi.

Misa, A., Duka, R. S., Layuk, S., & Kawatu, Y. T. (2019). HUBUNGAN KEDALAMAN SUMUR BOR DENGAN KADAR BESI (Fe) DAN MANGAN (Mn) DI KELURAHAN MALENDENG KECAMATAN PAAL 2 KOTA MANADO. Jurnal Kesehatan Lingkungan, 9(1). https://doi.org/10.47718/jkl.v9i1.644

Moore, K., & Wei, W. (2021). Applications of carbon nanomaterials in perovskite solar cells for solar energy conversion. Nano Materials Science, 3(3). https://doi.org/10.1016/j.nanoms.2021.03.005

Prayogi, E., Prasetyo, E., & Riski, A. (2020). Pemanfaatan Energi Surya Sebagai Sumber Energi Sepeda Listrik. Prosiding Seminar Rekayasa Teknologi, 29.

Putra, M. S., Ekonomi, F., & Udayana, U. (2011). Pengaruh Nepotisme terhadap Kepuasan Kerja , Komitmen Organisasional dan Intention to Stay. JURNAL Nama Orang APLIKASI MANAJEMEN, 10(66).

Ridwan Herdyansyah, Fitriana, & Yuliaty, F. (2020). PENGARUH PROFITABILITAS, LEVERAGE, REPUTASI KAP TERHADAP AUDIT DELAY. Jurnal Akuntansi Dan Auditing, 2(1).

Riede, M., Spoltore, D., & Leo, K. (2021). Organic Solar Cells—The Path to Commercial Success. Advanced Energy Materials, 11(1). https://doi.org/10.1002/aenm.202002653

Simpen, I. N., Indriana, R. D., & Koesuma, S. (2021). Analisis Karakteristik Sumur Bor Sebagai Sumber Air Tanah pada Daerah Batu Karang dan Tandus. INDONESIAN JOURNAL OF APPLIED PHYSICS, 11(1). https://doi.org/10.13057/ijap.v11i1.47532

Sugiyono. (2019). Metode Penelitian Kuantitatif, Kualitatif, dan R&D (1st ed.). Penerbit Alfabeta.

Uddin, A., Upama, M. B., Yi, H., & Duan, L. (2019). Encapsulation of organic and perovskite solar cells: A review. In Coatings (Vol. 9, Issue 2). https://doi.org/10.3390/coatings9020065

Published
2022-12-27
How to Cite
Sariman, S., & Fauzan Deyhan, M. (2022). PENGGUNAAN SOLAR SELL PADA POMPA AIR DC 12 V SUBMERSIBLE 280 W UNTUK SUMUR BOR 30 M. EDUSAINTEK: Jurnal Pendidikan, Sains Dan Teknologi, 10(1), 105-118. https://doi.org/10.47668/edusaintek.v10i1.687
Section
Articles