Rancang Bangun Parabolic Trough Collector Dengan Variasi Sudut

Anggraeni, Mega Lestari (2021) Rancang Bangun Parabolic Trough Collector Dengan Variasi Sudut. Diploma thesis, Politeknik Negeri Jember.

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Abstract

PTC is another type of thermal solar collector. This PTC is designed using a simple parabolic equation with a length of about 70 cm, an aperture of 50 cm and a copper pipe with a diameter of 12.7 mm. Aluminum plate is used as reflector and copper pipe is used as absorber. PTC system used in this study uses a tilt angle variation 10 , 20 and 30 , where the position of the sun falls perpendicular to the reflector surface. The purpose of this research is to design a small PTC, with a tilt angle variation 10 , 20 and 30 which can evaluate the performance of PTC at the optimal slope angle of September - December. The test was carried out on the top floor of the Jember State Polytechnic Engineering Building, at 10.00 WIB - 14.00 WIB. The system test uses a fluid mass flow rate of 0.00038 kg/s. PTC test results show the highest temperature is an angle of 20 by 74.8 at 11.30 WIB with an average efficiency of 12.4%. PTC efficiency depends on the intensity of solar radiation, surface area, outlet - inlet temperature difference, mass flow rate and air flow rate. If the angle of inclination is perpendicular to the position of the sun, the radiation absorbed will be maximum. The highest total heat transfer at PTC angle 20 of 54.58 W. The value of the heat transfer rate produced is influenced by how high the absorption of heat is and the position of the sun that is perpendicular to the tool. Keywords: Parabolic Trough Collector, Angle, Efficiency, Heat Transfer

Item Type: Thesis (Diploma)
Contributors:
ContributionContributorsNIDN/NIDK
Thesis advisorRahmanto, Dedy EkoNIDN8881500016
Uncontrolled Keywords: Parabolic Trough Collector, Angle, Efficiency, Heat Transfer
Subjects: 410 - Rumpun Ilmu Teknik > 430 - Ilmu Keteknikan Industri > 431 - Teknik Mesin (dan Ilmu Permesinan Lain)
Divisions: Jurusan Teknik > Prodi D4 Teknik Energi Terbarukan > Tugas Akhir
Depositing User: Mega Lestari Anggraeni
Date Deposited: 12 Nov 2021 02:12
Last Modified: 12 Nov 2021 02:13
URI: https://sipora.polije.ac.id/id/eprint/7973

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