Increasing the transmission performance of a conventional 110 kV cable line by combining a hydronic concrete pavement system with photovoltaic floor tiles

Author:

Klimenta Dardan,Jevtić Miroljub,Andriukaitis Darius,Mijailović Vladica

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Electrical and Electronic Engineering

Reference29 articles.

1. Efthymiou C, Santamouris M, Kolokotsa D, Koras A (2016) Development and testing of photovoltaic pavement for heat island mitigation. Sol Energy 130:148–160

2. Bopshetty SV, Nayak JK, Sukhatme SP (1992) Performance analysis of a solar concrete collector. Energy Convers Manag 33(11):1007–1016

3. Mallick RB, Chen B-L, Bhowmick S (2012) Harvesting heat energy from asphalt pavements: development of and comparison between numerical models and experiment. Int J Sustain Eng 5(2):159–169

4. Klimenta D, Jevtić M, Andriukaitis D (2020) An alternative method of increasing the ampacity of a 110 kV underground cable line using photovoltaic floor tiles and a hydronic concrete pavement system. In: Presented at the 3rd international conference on electronics and electrical engineering (ICEEE-2020), Montreal, Canada, July 29–30, 2020

5. Klimenta D, Jevtić M, Klimenta J, Perović B (2018) A review on new methods for increasing the ampacity of underground power cables: cool and photovoltaic pavements. In: Proceedings of the 6th international conference on renewable electrical power sources (6th ICREPS), pp 15–21

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