Thermoelectric Applications for Home Use: Thermostat and Green Barbecue 2.0

Materials Today: Proceedings - Tập 5 - Trang 10283-10290 - 2018
Marco Nesarajah1, Georg Frey1
1Chair of Automation and Energy Systems, Saarland University, D-66123 Saarbrücken, Germany

Tài liệu tham khảo

Anatychuk, 2012, Materials for Vehicular Thermoelectric Generators, Journal of Electronic Materials, 41, 1778, 10.1007/s11664-012-1982-0 Kiziroglou, 2014, Design and Fabrication of Heat Storage Thermoelectric Harvesting Devices, IEEE Transactions on Industrial Electronics, 61, 302, 10.1109/TIE.2013.2257140 Leonov, 2013, Thermoelectric Energy Harvesting of Human Body Heat for Wearable Sensors, IEEE Sensors Journal, 13, 2284, 10.1109/JSEN.2013.2252526 M. Nesarajah, G. Frey, Thermoelectric Power Generation: Peltier Element versus Thermoelectric Generator, 42nd Conf. IEEE IECON2016, Oct. 2016. [accepted]. Snyder, 2008, Complex thermoelectric materials, Nature Materials, 105, 10.1038/nmat2090 J.D. König, K. Bartholomé, H. Böttner, D. Jänisch, M. Klein Altstedde, M. Köhne, J. Nurnus, A. Roch, K. Tarantik, Thermoelectrics: power from waste heat, BINE-Themeninfo, 2016. M. Nesarajah, G. Frey, Energy Harvesting from Open Fireplaces, Springer Proceedings in Energy, 2nd ENEFM2014, 2015, 525–531. Nesarajah, 2016, Multiphysics Simulation in the Development of Thermoelectric Energy Harvesting Systems, Journal of Electronic Materials, 1408, 10.1007/s11664-015-4049-1 Micropelt: Der energieautarke Heizkörperstellantrieb (lit.: The self-powered radiator actuator). http://www.micropelt.de/downloads/itrv_heft.pdf.