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Journal : jes

Perbandingan Daya Output Panel Surya Rooftop Berdasarkan Gerak Semu Matahari Studi Kasus Kota Banda Aceh Syukriyadin; Sara, Ira Devi; Syahrizal; Kadafi, Muamar
Journal of Engineering and Science Vol. 1 No. 2 (2022): July-December 2022
Publisher : Yayasan Kawanad

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56347/jes.v1i2.106

Abstract

The research aims to get the best slope of the solar module to be placed on the roof of the building. This research will look at the performance of solar panels with varying slopes from various types in the city of Banda Aceh. The method used in this research is data collection by looking at the most significant output power from various slopes and comparing it with calculating the output power. The data from each month will also be compared so that the cross panel and the best tilt angle will be. From the research that has been done, it is found that in December and January, with the sun's declination angle of 23 ° and 20 ° North Latitude, the orientation of the solar panel installation is facing south with the best tilt angle of the solar panel is 20 ° -25 ° in December and 18 ° -24 ° in January. In July, the sun's declination is 21.2 ° North Latitude. The orientation of the solar panel installation is facing North, with the best tilt angle of the solar panel being 15 °.
Perbandingan Daya Output Panel Surya Rooftop Berdasarkan Gerak Semu Matahari Studi Kasus Kota Banda Aceh Syukriyadin; Sara, Ira Devi; Syahrizal; Kadafi, Muamar
Journal of Engineering and Science Vol. 1 No. 2 (2022): July-December 2022
Publisher : Yayasan Kawanad

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56347/jes.v1i2.106

Abstract

The research aims to get the best slope of the solar module to be placed on the roof of the building. This research will look at the performance of solar panels with varying slopes from various types in the city of Banda Aceh. The method used in this research is data collection by looking at the most significant output power from various slopes and comparing it with calculating the output power. The data from each month will also be compared so that the cross panel and the best tilt angle will be. From the research that has been done, it is found that in December and January, with the sun's declination angle of 23 ° and 20 ° North Latitude, the orientation of the solar panel installation is facing south with the best tilt angle of the solar panel is 20 ° -25 ° in December and 18 ° -24 ° in January. In July, the sun's declination is 21.2 ° North Latitude. The orientation of the solar panel installation is facing North, with the best tilt angle of the solar panel being 15 °.
Perbandingan Daya Output Panel Surya Rooftop Berdasarkan Gerak Semu Matahari Studi Kasus Kota Banda Aceh Syukriyadin; Sara, Ira Devi; Syahrizal; Kadafi, Muamar
Journal of Engineering and Science Vol. 1 No. 2 (2022): July-December 2022
Publisher : Yayasan Kawanad

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56347/jes.v1i2.106

Abstract

The research aims to get the best slope of the solar module to be placed on the roof of the building. This research will look at the performance of solar panels with varying slopes from various types in the city of Banda Aceh. The method used in this research is data collection by looking at the most significant output power from various slopes and comparing it with calculating the output power. The data from each month will also be compared so that the cross panel and the best tilt angle will be. From the research that has been done, it is found that in December and January, with the sun's declination angle of 23 ° and 20 ° North Latitude, the orientation of the solar panel installation is facing south with the best tilt angle of the solar panel is 20 ° -25 ° in December and 18 ° -24 ° in January. In July, the sun's declination is 21.2 ° North Latitude. The orientation of the solar panel installation is facing North, with the best tilt angle of the solar panel being 15 °.
Co-Authors abdul haris subarjo, abdul haris Agus Hendra Al Rahmad Agusrini, Mira Ajinar Akhmad Dwi Priyatno Akhyari Alfisyahrin Ali, Masri ALI, NURDIN Ambarwati , Rini Arif Gunawan Arif, Zainal Armalena, Armalena Bambang Dwi Argo Dedet Hermawan Setiabudi, Dedet Hermawan Edilpatriz, Edilpatriz Eka Lestari Eli Kumolosari Erlin, Nia Ariyani Erma Gustina Erni Masdupi Erniwati Fatmawati Fatmawati Ferdy Rehan Pane Fitri Yulianis Gema Asiani Gultom, Muhammad Husin Gunawan, Randi Handana, Muhammad Agung Putra Hanifah, Feny Ditya Haq, Zhiaul Heltha, Fahri Hendri Novia Syamsir Herlenni Evi Sesty Hermanto Husni Ida Royani Ihsan, Shahibul Ira Devi Sara IRMA DEWI ISKANDAR Jalaali, Bahrul Junaidi Junaidi Juwita Kamal Kamal Karolina, Rahmi KARTINI Krisna Jaya, Canra Kurniawan, Rhohis Liza Salawati, Liza M. Nizar Machmud Maha, Inike Gujamela Mahdi Syukri Masri Ibrahim Mhd.Abdurrazzaq Miftahul Khaira Mitra, Robi Muamar Kadafi, Muamar MUHAJIR Muhamad Zen Muhammad Antor Riady Muhammad Hatta muhammad kevin Muhammad, Mahdir Muhammmad Jamil Murdani Muzni Sahar Nabila Aulia Ramadhani Nasrullah Nasrullah Nasution, Elvy Sahnur Ningrum, Rani Iftika Okto Dinaryanto Rahmadhani, Romi Rahmi Syahriza, Rahmi Ramdesta, Andry Ramdhan Halid Siregar Rindu Pilyta Rujiman Sabri Safrizal Siregar, Riza Inanda Siregar, Tika Rahma Yani Sri Meiyenti Sri Setiawati Suhaeri Suriadi Sutoyo, Almin Syamsir, Hendri Novia Syamsul Amar B Syukriyadin Taek, Oscar Tarmizi, H.B. Wahyu Agustina, Wahyu Wijianto, Agus WINARNO Winona Kumara Dewi Yani, M. Yulia, Resi Yusuf Wibisono Yuwaldi Away Zainal Arifin Zaira, Jupri Yanda Zakaria Zetra, Aidinil Zuhro Haris