Kajian Penggunaan Pembangkit Listrik Photovoltaik Atap Sebagai Upaya Implementasi Green Campus

Hamdani Umar

Sari


Konsep Green Campus mengartikan bahwa Universitas telah menerapkan kegiatan yang bertujuan melestarikan lingkungan,efisiensi energi, dan penciptaan kondisi yang nyaman untuk belajar dan bekerja. Pemanfaatan energi baru terbarukan
merupakan salah satu langkah dalam upaya menuju Green Campus. Kajian ini ditujukan untuk menganalisa kelayakan secara teknik dan finansial pembangunan Pembangkit Listrik tenaga Surya di atap bangunan gedung dalam lingkungan kampus. Dengan menggunakan data masterplan kampus Universitas Samudra, telah dilakukan analisa kelayakan teknis dan finansial menggunakan software System Advisor Model (SAM), diperoleh hasil dengnan luas atap yang tersedia, daya listrik yang dapat dibangkit sebesar 3 MW. Dan secara finansial membutuhkan biaya produksi listrik 11,7 cents/kWh. 


Kata Kunci


Pembangkit listrik tenaga surya; Green Campus; finansial; SAM software

Teks Lengkap:

PDF

Referensi


Murphy F and McDonnell K 2017 A feasibility assessment of

photovoltaic power systems in Ireland; a case study for the Dublin region Sustainability (Switzerland) 9 1–14

Hafez A A A and Alblawi A 2018 A feasibility study of PV installation: Case study at Shaqra University 2018 9th International Renewable Energy Congress, IREC 2018 1–5

Kristiawan R B, Widiastuti I and Suharno S 2018 Technical and economical feasibility analysis of photovoltaic power installation on a university campus in indonesia MATEC Web of Conferences 197 08012

da Silva G D P 2017 Utilisation of the System Advisor Model to Estimate Electricity Generation by Grid-Connected Photovoltaic

Projects in all Regions of Brazil International Journal of Software

Engineering and Its Applications 11 1–12

H. Jo J, Ilves K, Barth T and Leszczynski E 2017 Correction:

Implementation of a large-scale solar photovoltaic system at a higher education institution in Illinois, USA AIMS Energy 5 313–5

Hasapis D, Savvakis N, Tsoutsos T, Kalaitzakis K, Psychis S and Nikolaidis N P 2017 Design of large scale prosuming in Universities: The solar energy vision of the TUC campus Energy and Buildings 141 39–55

Kathar S S, Thosar A G and Patil G C 2017 Design of rooftop solar pv 8 81–92

Lee J 2012 Economic Feasibility Study of Photovoltaic System on UNH Campus

Song J and Choi Y 2015 Evaluation of rooftop photovoltaic electricity generation systems for establishing a green campus Geosystem Engineering 18 51–60

Su Y and Yan J W 2013 Methodology of Measurement and Calculation of Building Energy Management System in University Campus Applied Mechanics and Materials 368–370 454–9

Barua S, Prasath R A and Boruah D 2017 Rooftop Solar Photovoltaic System Design and Assessment for the Academic Campus Using PVsyst Software International Journal of Electronics and Electrical Engineering 5 76–83

Tarigan E 2018 Simulation and Feasibility Studies of Rooftop PV System for University Campus Buildings in Surabaya , Indonesia INTERNATIONAL JOURNAL of RENEWABLE ENERGY RESEARCH 8 895–908

AASHE 2015 AASHE’s solar photovoltaic database AASHE

University of Queensland 2016 UQ Photovoltaic Sites University of Queensland

Renesola 2019 SOLAR PANEL Renesola

ABB 2019 Solar inverters ABB


Refbacks

  • Saat ini tidak ada refbacks.


##submission.copyrightStatement##

##submission.license.cc.by-sa4.footer##

Creative Commons License

Prosiding Seminar Nasional Politeknik Negeri Lhokseumawe is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License

© 2017 All rights reserved |Seminar nasional Politeknik Negeri Lhokseumawe p-ISSN:2598-3954.

.