DISAIN MODUL POMPA AIR LAUT TENAGA SURYA UNTUK PRODUKSI GARAM
DOI:
https://doi.org/10.32497/eksergi.v17i1.2079Keywords:
energi baru terbarukan, energi surya, modul pompa, produksi garamAbstract
Kelangkaan garam perlu dengan cepat diatasi. Penggunaan modul pompa air laut diharapkan menjadi alternatif dalam mengatasi permasalahan kelangkaan garam. Desain modul pompa air laut tergantung dari potensi energi Matahari di Indonesia. Kemampuan panel surya mengekstrak energi Matahari dan hubungannya dengan pemilihan kapasitas pemompaan di analisa dalam makalah ini. Keekonomian penggunaan modul pompa air laut dan pompa degan mesin berbahan bakar minyak dibandingkan untuk diketahui nilai keekonomisan modul pompa air laut sebagai pengganti mesin pompa.References
[Adi et al., 2007] Adi, T. R., Supangat, A., Sulistiyo, B., S, B. M., Amarullah, H., Prihadi, T. H., Sudarto, Soentjahjo, E., and Rustam, A. (2007). Buku Panduan Pengembangan usaha Terpadu Garam dan Artemia. Pusat Riset Wilayah Laut dan Sumberdaya Non Hayati-DKP.
[Argaw et al., 2001] Argaw, N., Foster, R., and Ellis, A. (2001). Renewable energy for water pumping applications in rural areas. Technical report, NREL.
[Betka and Moussi, 2004] Betka, A. and Moussi, A. (2004). Performance optimization of a photovoltaic induction motor pumping system. Renewable Energy, 29(14):2167 ”“ 2181.
[Bouzidi, 2013] Bouzidi, B. (2013). New sizing method of pv water pumping systems. Sustainable Energy Technologies and Assessments, 4(Supplement C):1 ”“ 10.
[Campana et al., 2013] Campana, P. E., Li, H., and Yan, J. (2013). Dynamic modelling of a pv pumping system with special consideration on water demand. Applied Energy, 112(Supplement C):635 ”“ 645.
[Chaib et al., 2015] Chaib, A., Kesraoui, M., and Aklouche, M. (2015). Sizing a pv pumping system for an algerian remote site. In IREC2015 The Sixth International Renewable Energy Congress, pages 1”“5.
[Jones et al., 2016] Jones, M., Odeh, I., Haddad, M., Mohammad, A., and Quinn, J. (2016). Economic analysis of photovoltaic (pv) powered water pumping and desalination without energy storage for agriculture desalination, 387(Supplement C):35 ”“ 45.
[Nordin and Rahman, 2014] Nordin, N. D. and Rahman, H. A. (2014) Design and economic analysis in stand alone photovoltaic system. In 2014 IEEE Conference on Energy Conversion (CENCON), pages 152”“157.
[Rahmantya et al., 2015] Rahmantya, K. F., Astianto, A. D., Wibowo, D., Wahyuni, T., and Somad, W. A. (2015). Kelautan dan Perikanan Dalam Angka Tahun 2018. Pusat Data, Statistik dan Informasi-KKP
[Said et al., 2017] Said, W., Gaber, H. A., and Mami, A. (2017). Sizing and. simulation of an energy sufficient stand-alone pv pumping system. In 2017 International Conference on Promising Electronic Technologies (ICPET), pages 8”“13.
[Yahyaoui et al., 2017] Yahyaoui, I., Atieh, A., Tadeo, F., and Tina, G. M. (2017). Energetic and economic sensitivity analysis for photovoltaic water pumping systems. Solar Energy, 144(Supplement C):376 ”“ 391.
Downloads
Published
Issue
Section
License
Authors who publish with this journal agree to the following terms:Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).