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access icon openaccess Temperature field simulation and ampacity optimisation of 500 kV HVDC cable

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References

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      • 2. International Electrotechnical Commission: ‘IEC60287-2 calculation of the current rating-part 2: thermal resistance’ (IEC, Geneva, Switzerland, 2001).
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      • 3. International Electrotechnical Commission: ‘IEC60287-2 calculation of the current rating-part 3: thermal resistance’ (IEC, Geneva, Switzerland, 2001).
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      • 4. Yang, Y., Cheng, P., Chen, J., et al: ‘Cable heat dissipation considering air flow field, its influencing factors and economical efficiency’, Electr. Power Autom. Equip., 2013, 33, (1), pp. 5054.
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      • 6. Liang, Y., Li, Y., Chai, J., et al: ‘A new method to calculate the steady-state temperature field and ampacity of underground cable system’, Trans. China Electrotech. Soc., 2007, 22, (8), pp. 185190.
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      • 7. Liang, Y., Wang, Q., Yan, C., et al: ‘Temperature field and ampacity calculation of cable buried in local conduit using 3D finite element method’, High Volt. Eng., 2011, 37, (12), pp. 29112917.
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      • 8. Liang, Y., Li, Y., Li, Y., et al: ‘Calculation of the static temperature field of underground cables using heat charge simulation method’, Proc. CSEE, 2008, 28, (16), pp. 129134.
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      • 9. Liu, G., Lei, M., Ruan, B., et al: ‘Model research of real-time calculation for single-core cable temperature considering axial heat transfer’, High Volt. Eng., 2012, 38, (8), pp. 18771883.
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      • 10. Lei, M., Liu, G., Qiu, J., et al: ‘Real-time core temperature calculation of single-core cable by nonlinear finite element method’, Power Syst. Technol., 2011, 35, (11), pp. 163168.
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