Identifikasi Termoelektrik Generator sebagai Pembangkit Tenaga Listrik
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Barma, M. C., Riaz, M., Saidur, R., & Long, B. D. (2015). Waste Heat Recovery by Thermoelectric Generator from Thermal Oil Heater Exhaust. International Journal of Electrical Energy, 3(4), 235–238. Retrieved from https://doi.org/10.18178/ijoee.3.4.235-238
Hatzikraniotis, E. (2012). On the recovery of wasted heat using a commercial thermoelectric device. Acta Physica Polonica A, 121(1), 287–289.
Karri, M. A. (2011). Thermoelectric Power Generation System Optimization Studies. IEE Reviews, 125(11), 1113–1136. Retrieved from https://doi.org/10.1080/00107516108202661
Nugroho, W. A. (2015). Exhaust System Generator: Knalpot Penghasil Listrik Dengan Prinsip Termoelektrik. Exhaust System Generator: Knalpot Penghasil Listrik Dengan Prinsip Termoelektrik, 13(2), 161–168. Retrieved from https://doi.org/10.15294/sainteknol.v13i2.5249
Sano, S., Mizukami, H., & Kaibe, H. (2003). Development of High-Efficiency Thermoelectric Power Generation System. Komatsu Technical Report, 49(152), 20–26.
Sugiyanto. (2014). Pemanfaatan Panas Knalpot Sepeda Motor Matic 110 Cc Untuk Pembangkitan Listrik Mandiri. Jurnal Rekayasa Mesin, 9(3), 105–111.
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