Testing of Solar Powered Adsorption Refrigeration Machine With Collector Area 1m2 Collector Angle 0o
Keywords:
Activated Carbon, Adsorption, Collector/Adsorber, Methanol, Refrigerant Machine, Solar EnergyAbstract
The sun is one of potential renewable energy resources. One of the utilization of solar energy as the main source of energy for the adsorption refrigeration cycle cooling machine to produce cooling effect. In this research, the type of collector used is flat plate collector. Collector insulation on refrigeration machine use plywood, EVA foam, styrofoam, rockwool, and glass. The surface area of collector is 1 m2 with thick of the plate is 1 mm. In this reasearch carbon active used is technical carbon active/granular filled in collectors as much as 18,5 kg,methanol used is pro-analysis with purity 99,9% as much as 5 liters, and water as cooling medium as much as 6 liters. Tilt angle of collector in this reasearch is 0o. From this reasearch obtained lowest temperature of water is 9,98 oC. Highest total energy absorbed by collector as much as 3,186 MJ with ambient temperature about 28,6 oC
References
Bako, C. S. O. (2016). PENGUJIAN PEMBANGKIT LISTRIK SOLAR CELL BERBAHAN TEMBAGA DENGAN PENUTUP KACA HITAM DAN KACA PUTIH.
Damanik, J. (2016). Pengujian Mesin Pendingin Adsorpsi Tenaga Surya dengan Karbon Aktif-Metanol sebagai Pasangan Adsorben-Adsorbat.
Dewi, I. K. (2010). Perpustakaan Umum Surakarta Sebagai Perwujudan Ruang Komunal Dengan Pengoptimalan Pengolahan Lansekap.
Harjunowibowo, D., Wijayanto, D. S., & Rahayu, J. T. W. (2014). Model Eksperimen Konversi Energi Sistem Refrigerasi Dengan Metode Adsorpsi. Jurnal Materi Dan Pembelajaran Fisika, 4(2).
JUNATA, M. R. I. D., & NOPEMBER, I. T. S. (n.d.). DESIGN OF MARINE TRANSPORTATION SYSTEM TO SUPPORT POTENTIAL MARITIME TOURISM: CASE STUDY MARATUA ISLAND.
Karyono, T. H. (2001). Wujud Kota Tropis di Indonesia: Suatu Pendekatan Iklim Lingkungan dan Energi. DIMENSI: Journal of Architecture and Built Environment, 29(2).
Marwani, M., Kadir, M. Z., & Ellyanie, E. (2019). ANALISIS PERFORMANSI PEMANAS AIR SURYA RANGKAIAN SERI DAN PARALEL MENGGUNAKAN PIPA TEMBAGA DENGAN GLASS TUBE COLLECTOR. Applicable Innovation of Engineering and Science Research (AVoER), 380–385.
Maysha, I., & Trisno, B. (2013). Pemanfaatan Tenaga Surya Menggunakan Rancangan Panel Surya Berbasis Transistor 2N3055 Dan Thermoelectric Cooler. Electrans, 12(2), 89–96.
Mbolo, Y. (2011). APLIKASI SMS UNTUK MONITORNG TAGIHAN LISTRIK DI CABANG KUPANG WILAYAH NTT BERBASIS SMS GATEWAY. STMIK AKAKOM Yogyakarta.
Panjaitan, J. (2019). PENGARUH LAMA PENGERINGAN ASAM GELUGUR SECARA HYBRID DENGAN ENERGY SURYA TERHADAP KANDUNGAN ASAM SITRAT.
Pranoto, A., Nauri, I. M., & Sumarli, S. (2022). Pengaruh temperatur air yang didinginkan AC dan temperatur air radiator terhadap output daya thermoelectric generator. Jurnal Teknik Otomotif: Kajian Keilmuan Dan Pengajaran, 5(2), 13–18.
Pratama, A. O., Rohdiana, A., & Saraswati, R. R. (2018). Potensi Electronic Tree Based On Solar Cell and Microalgae. Risenologi, 3(2), 71–75.
Ratnasari, S. (2022). ANALISIS AUDIT ENERGI PADA SISTEM TATA UDARA GEDUNG RUMAH SAKIT UMUM PRASETYA BUNDA KOTA TASIKMALAYA. Universitas Siliwangi.
Sitorus, T. B. (2018). Kinerja Kolektor Tipe Plat Datar Pada Mesin Pendingin Adsorpsi Tenaga Surya Di Kota Medan. Jurnal Teknosains, 7(2), 94–103.
Wibisono, A. (2020). Analisis Sistem Pengkondisian Udara Menggunakan Fotovoltaik Tenaga Surya Sebagai Sumber Energi Alternatif Ramah Lingkungan. ABSTRACT OF UNDERGRADUATE RESEARCH, FACULTY OF INDUSTRIAL TECHNOLOGY, BUNG HATTA UNIVERSITY, 16(2), 4.
Widayana, G. (2012). Pemanfaatan energi surya. Jurnal Pendidikan Teknologi Dan Kejuruan, 9(1).
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