Claim Missing Document
Check
Articles

Found 1 Documents
Search
Journal : PELS (Procedia of Engineering and Life Science)

Roofs and Walls of Buildings as a Media for Converting Solar Thermal Energy into Electrical Energy Rifky; Agus Fikri; Mohammad Mujirudin
Procedia of Engineering and Life Science Vol 2 (2021): Proceedings of the 3rd Seminar Nasional Sains 2021
Publisher : Universitas Muhammadiyah Sidoarjo

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (531.189 KB) | DOI: 10.21070/pels.v1i1.793

Abstract

Solar energy can be used by buildings. Parts of the building can convert solar thermal energy into electrical energy.The roof and walls are the parts of the building that receive the most sunlight. Therefore, the roof and walls of the building can supply electricity with the thermoelectric generator. The aim of this research is to get the maximum possible output power from the thermoelectric generator system. From the output power produced, it will be possible to find the feasibility of a thermoelectric generator to be used as an energy source for the roof and walls of the building model. The building model is designed simply where the roof and walls can be located a thermoelectric generator system, which consists of a heat sink, a thermoelectric circuit and a cooling system. The heat sink used is aluminum. The thermoelectric circuit consists of 15 sets which are assembled in a series connection arrangement. The cooling system used is active cooling, where water as the cooling fluid circulates continuously during the operation of the system. The thermoelectric hot side temperature is obtained from solar thermal radiation through a heat sink. Meanwhile, the temperature on the cold side of the thermoelectric is the result of the effect of the cooling system that is attached. The temperature difference between the hot and cold sides of the thermoelectric produces a system output in the form of electric voltage and electric current. This study obtain that the generator system on the roof with a temperature difference of 8.90 oC on the hot-cold side produces a power of 1.953 watts. While the generator system on the wall with a temperature difference between the hot-cold side of 1.80 oC produces a power of 0.030 watts.
Co-Authors Aby Elsa Putra Acep Saputra Ade Irza Fahrezi Adittia Fajar Agus Fikri Agus Fikri Agus Fikri Agus Fikri Agus Fikri Akhmad Rizal Dzikrillah Amirullah, Gufron Andika Prasetya Ar Rasyid, Arif Fikry Arif Widodo Ario Kilat Buono Avorizano, Arry Buono, Ario Kilat Cahyani, Regita Septia Cahyono, Fajar Nur Curatman, Aang Dan Mugisidi Delvis Agusman Delvis Agusman Delvis Agusman Dicky Wyldan Putra Permana Dimas Priyuko Tri Asmoro Dimas Priyuko Tri Asmoro, Dimas Priyuko Tri Asmoro Efendi, M Shofriyan Faldy Irwiensyah Fauzi, Herman Febriansyah, Fikri Fikri, Agus Fikri, Agus Gusto Arif Tansah Hafizh Raihan Hamzah, Arif Herliani Igi Putra Moran Purba imam sobirin, muhammad Irfansyah, Putra Kurnia Sandi Oktaris Lumowa, Sonja V.T M Yusuf D M. Imam Sobirin M. Mujirudin M. Naufal Fadrurrahman M. Rafi Cahya Firdaus M. Ravi Cahya Firdaus M. Shofriyan Efendi Miftah Almunir Mohammad Arfan Muzakkir Mohammad Mujirudin Mohammad Mujirudin Mohammad Mujirudin Mohammad Yusuf Djeli Mohammad Yusuf Djeli Muhammad Fahmi Nurhidayat Muhammad Imam Sobirin Muhammad Isya Ramdhany Muharom4, Vazri Muhidal Wasi Mujirudin, Mohammad Mustofa Mustofa Muzakkir, Mohammad Arfan Nazilul Muttaqin Nautica Nofendri, Yos Nur rohman Nur Rohman Oktabiansyah, Tobi Oktarina Heriyani Oktarina Heriyani Pancatatva Hesti Gunawan Pandu Kusuma Pangestu Perdana, Ana Wahyu Putra, Aby Elsa Regita Septia Cahyani Reyhan Martin Firnanda Reza Ferizal Akbar Rezha Apriansyah Riyan Ariyansah Saddam Firly Mustarisiam Saputra, Ferdyan Arif Mawanda Sepannur Bandri Setiawan , Eki Hadi Sri Purwati, Sri Sri Wahyuni Tasyrik Al Qaida Thoriq Muhammad Nur Zain Vazri Muharom Wahyu Kuncoro Wasi, Muhidal Wati Sukmawati Wijaya, Victor Indra Zuriman Anthony