Amir Farhani Muharam, . (2021) ANALISIS PERBANDINGAN DAYA OUTPUT PANEL SURYA DENGAN REFLEKTOR ALUMINIUM FOIL CEKUNG DAN DATAR. Skripsi thesis, Universitas Pembangunan Nasional Veteran Jakarta.
Text
ABSTRAK.pdf Download (14kB) |
|
Text
AWAL.pdf Download (454kB) |
|
Text
BAB 1.pdf Download (114kB) |
|
Text
BAB 2.pdf Restricted to Repository UPNVJ Only Download (775kB) |
|
Text
BAB 3.pdf Restricted to Repository UPNVJ Only Download (716kB) |
|
Text
BAB 4.pdf Restricted to Repository UPNVJ Only Download (555kB) |
|
Text
BAB 5.pdf Download (70kB) |
|
Text
DAFTAR PUSTAKA.pdf Download (80kB) |
|
Text
RIWAYAT HIDUP.pdf Restricted to Repository UPNVJ Only Download (23kB) |
|
Text
LAMPIRAN.pdf Restricted to Repository UPNVJ Only Download (4MB) |
|
Text
ARTIKEL KI.pdf Restricted to Repository staff only Download (1MB) |
Abstract
The addition of a reflector on the solar panel is used to direct the intensity of sunlight to be more focused on the solar panel as an effort to increase the output power of the solar panel due to the lack of efficiency of the solar panel itself. In an effort to increase the intensity of sunlight, it is necessary to choose a good reflector shape, which is a shape that does not scatter incoming light, such as concave and flat shapes. However, the use of reflectors can also reduce the output power of the solar panels due to the increase in the temperature of the solar panels, so a cooling system is needed to overcome this. The research was conducted using monocrystalline and polycrystalline solar panels with variations in the shape of the concave and flat aluminum foil reflector and variations in reflector angles of 30°, 45°, 60° with the addition of a heatsink cooling system. The research method in this study is to compare two forms of reflectors on two types of solar panels with and without the addition of a heatsink. The result is that the largest increase in the output power difference between the concave and flat reflectors after the addition of the heatsink is the 60° angle for monocrystalline from 0.643% to 1.565%, and polycrystalline from 1.017% to 1.307%. And the largest decrease in temperature difference occurred at an angle of 45° for monocrystalline from 1.432% to 0.995%, an angle of 60° for polycrystalline from 1.428% to 0.677%.
Item Type: | Thesis (Skripsi) |
---|---|
Additional Information: | [No.Panggil: 1710311027] [Pembimbing: Damora Rhakasywi] [Penguji 1: Muhamad As’adi] [Penguji 2: Sigit Pradana] |
Uncontrolled Keywords: | Solar Panel, Reflector, Heatsink, Power output |
Subjects: | T Technology > TJ Mechanical engineering and machinery |
Divisions: | Fakultas Teknik > Program Studi Teknik Mesin (S1) |
Depositing User: | Amir Farhani Muharam |
Date Deposited: | 16 Sep 2021 09:42 |
Last Modified: | 16 Sep 2021 09:42 |
URI: | http://repository.upnvj.ac.id/id/eprint/11669 |
Actions (login required)
View Item |