Analisa Tinggi Permukaan Air Optimum Dalam Basin Terhadap Kuantitas Air Hasil Dan Unjuk Kerja Destilator Tenaga Surya

Ambarita, Arsenius Roni Tua (2019) Analisa Tinggi Permukaan Air Optimum Dalam Basin Terhadap Kuantitas Air Hasil Dan Unjuk Kerja Destilator Tenaga Surya. Other thesis, Universitas Islam Riau.

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Abstract

Solar Destilator is a device used to get clean water. Basically the solar destilator performance uses solar radiation through the penetrates of glass cover and strike the surface from an absorbent plate, thus, the absorbent plate heats up and the heat energy from absorbent plate will heat the seawater in the basin. The water evaporates and concentrates under the surface of the glass cover, the sticking liquid in the glass cover will flow follows the slope of the glass cover causes of the water weight has exceeded the restraint and continue it to the clean water canal reservoir. The aims of this research is to get the optimum water level in the solar destilator basin which produces the highest quantity of water and to get the optimum high water produced with best performance. This research uses variation of water height 200 mm, 300 mm, 400 mm, 500 mm and 600 mm. Each of height water has a different quantity of water. This is because more higher water in the basin, the more of volume. After calculation, it found the 200 mm water height has the best amount of water produced and best performance with a quantity of water produced of 1.464 ml at the rate of energy condensation is 108.26 Watts, with the distillation rate in the distillation process is 0.0000451 kg / s, product efficiency is 7.12%, efficiency distillation system is 18.72%.

Item Type: Thesis (Other)
Uncontrolled Keywords: High water, Solar destilator, Water, The performance, Quantity of water produced
Subjects: T Technology > TJ Mechanical engineering and machinery
Divisions: > Teknik Mesin
Depositing User: Mohamad Habib Junaidi
Date Deposited: 15 Mar 2022 06:40
Last Modified: 15 Mar 2022 06:40
URI: http://repository.uir.ac.id/id/eprint/8697

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