Numerical simulation of heat dissipation processes in underground power cable system situated in thermal backfill and buried in a multilayered soil

Author:

Ocłoń Paweł,Cisek Piotr,Pilarczyk Marcin,Taler Dawid

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

Reference58 articles.

1. Reduction of greenhouse gas emissions resulting from decreased losses in the conductors of an electrical installation;Lobão;Energy Convers Manage,2014

2. Winding capacitance dividing scheme for a high-voltage cable-wound generator;Tian;Energy Convers Manage,2010

3. IEC 60287-2-1: Electric Cables-Calculation of the current rating – Part 2: Thermal resistance – Section 1: calculation of the thermal resistance; 1995.

4. IEEE 835-1994: IEEE Standard Power Cable Ampacity Tables; 1994.

5. Numerical simulation of coupled heat, liquid water and water vapor in soils for heat dissipation of underground electrical power cables;Kroener;App Therm Eng,2014

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