Optimalisasi sistem pendingin berbasis termoelektrik berpendingin air
Abstract
The use of refrigerator and air conditioner in human life causes increase in use of hydrocarbon and fluorocarbon each year. Hydrocarbon and fluorocarbon are hazardous subtances that can make a hole in ozone that cause increase in receive of ultraviolet on earth, that will give negative impact on human health. Thermoelectric refrigeration as a solid state heat pump is a safe solution to subtitute the used of hidrocarbons and fluorocarbons based refrigerator and air conditioner. The experiment is conducted to test a thermoelectric based refrigeration system which uses water as a working fluid. The result shows that refrigeration system will be optimum at 6V and 2.24A of electricity consumption, and 0.5 and 1 litre/minute of water flowrate. While Coefficient of Performance (COP) of the system is 0.86.
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Ananta H., Padang Y.A., Mirmanto, 2017, Unjuk kerja kulkas termoelektrik dengan rangkaian seri dan
paralel pada beban air 150 ml, Jurnal Dinamika Teknik Mesin, 7(2), 80-86.
Cengel Y.A., Ghajar A.J., 2015, Heat and mass transfer, Penerbit McGraw-Hill Education, New York.
Ismael T., Yun S.B., Ulugbek F., 2016, Radiator heat dissipation performance, Jurnal of Electronics
Cooling and Thermal Control, 6, 88-96.
Isnanda, 2005, Penggunaan Refrigeran hidrokarbon (HC) dalam bisnis perawatan dan perbaikan AC,
Jurnal Teknik Mesin, 2(1), 44-48.
Jugsujinda S., Vora-Ud, Seetawan T., 2011, Analyzing of thermoelectric refrigerator performance,
Jurnal Procedia Engineering, 8(1), 154-149.
Mainil R.I., Aziz A., Kuniawan A., 2015, Penggunaan modul thermoelekctric sebagai elemeen
pendingin box cooler, Prosiding Seminar Nasional Rekayasa dan Aplikasi Teknik Mesin di
Industri, Bandung.
Maulana A., 2010, Penggunaan BPO (Bahan Perusak Ozon) di Provinsi Jakarta dari sektor
refrigerator, Jakarta
Mirmanto, Alit I.B., Sayoga I.M.A., Sutanto R., Nurchayati, Mulyanto A., 2018, Experimental cooler box
performance using two different heat removal units: A heat sink fin-fan, and a double fan heat
pipe, Jurnal Frontiers in Heat and Mass Transfer, 10, 1-7.
Mirmanto, Sutanto R., Putra D.K., 2018 Unjuk kerja kotak pendingin termoelektrik dengan variasi lajua
aliran massa air pendingin, Jurnal Teknik Mesin, 7(1), 44-49.
Nulhakim, 2017, Uji unjuk kerja pendingin ruangan berbasis theroelectric cooling, Jurnal Simeteris,
(1), 85-90.
Putra F.C., Repi V.V.R, 2015, Perancangan dan pembuatan kotak pendingin berbasis termoelektrik
untuk aplikasi penyimpanan vaksin dan obat-obatan, Jurnal Ilmiah Giga, 18(2), 102-109.
Tan G., Zhao D., 2015, Study of thermoelectric space cooling system integrated with phase change
material, Jurnal Applied Thermal Engineering, 86, 187-198.
Wahyu D., Andriyanto, Hanif, Sukma R., Rosa Y., 2016, Kajian eksperimental alat multifungsi bercatu
daya termoelektrik, Jurnal Rotor, Edisi khusus(2), 46-51.
Widianto T.N., Hakim A.R., 2016, Performansi pendingin termoelektrik alat transportasi ikan segar
pada berbagai tegangan, Jurnal Agritech, 36(4), 485-490.
Widianto T.N., Hermawan W., Utomo B.S.B., 2014, Uji coba peti ikan segar berpendingin untuk
pedagang ikan keliling, Jurnal JPB Perikanan, 9(2), 185-191.
DOI: https://doi.org/10.29303/dtm.v9i1.253
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