Loss Allocation in Submarine Armored Three-Core HVAC Power Cables
Loss allocation of the three different components (conductor, sheaths, and armor) of solidly bonded three-core separated lead-sheathed armored cables, frequently employed in offshore wind farms, is challenging due to the lack of accurate enough analytical expressions in the International Electrotech...
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Veröffentlicht in: | IEEE transactions on industry applications 2021-11, Vol.57 (6), p.5706-5715 |
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Sprache: | eng |
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Zusammenfassung: | Loss allocation of the three different components (conductor, sheaths, and armor) of solidly bonded three-core separated lead-sheathed armored cables, frequently employed in offshore wind farms, is challenging due to the lack of accurate enough analytical expressions in the International Electrotechnical Commission (IEC) standard. Also, loss allocation through experimental tests leads to inaccurate results since it is based on questionable assumptions. This article improves both the IEC formulae and experimental methods by means of different analytical corrections in the conductor and sheath loss expressions. To this aim, an ad hoc application interface (Virtual Lab) based on three-dimensional numerical simulations (finite element method) has been developed. This tool virtualizes and automates different test setups to emulate, in few seconds, the most employed experimental procedures in this type of cable. The analytical corrections have been derived from an in-depth analysis of a first set of 368 cables, ranging from 30 to 275 kV. The new loss expressions were successfully applied to a second set of 645 armored cables of quite diverse features (voltages from 10 to 275 kV, sections and dimensional parameters), hence bringing a general framework for any kind of three-core armored cable. |
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ISSN: | 0093-9994 1939-9367 |
DOI: | 10.1109/TIA.2021.3113894 |