Thermodynamic modelling of buried transformer substations for dynamic loading capability assessment considering underground heat accumulative effect

Author:

Zhou Bin,Xu Xiaolin,Or Siu Wing,Li Canbing,Wu Qiuwei,Zhang Cong,Li Wenfang

Funder

Innovation and Technology Commission of the HKSAR Government to the Hong Kong Branch of National Rail Transit Electrification and Automation Engineering Technology Research Center

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology

Reference41 articles.

1. UN Habitat. World Cities Report 2016: Urbanization and development-emerging futures. Available from: .

2. Fuentes GJ, Galaktionov O, Bermudez C. Special urban transformer substation. In: The 19st CIRED International conference on electricity distribution, Vienna, Austria, 21-24 May, 2007, pp. 1–4.

3. A new optimization model for distribution substation siting, sizing, and timing;El-Fouly;Int J Electr Power Energy Syst,2008

4. Power transmission and distribution losses–a model based on available empirical data and future trends for all countries globally;Sadovskaia;Int J Electr Power Energy Syst,2019

5. Does apartment’s distance to an in-built transformer room predict magnetic field exposure levels?;Huss;J Eposure Sci Environ Epidemiol,2013

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