Influence of multi-layered sediment characteristics on the thermal performance of buried submarine high-voltage cables

被引:5
作者
Cao, Zeng [1 ]
Liang, Xu [1 ]
Deng, Yu [1 ]
Wang, Chizhong [1 ]
Wang, Lizhong [1 ]
Zhu, Ronghua [1 ]
Zeng, Jiangning [2 ]
机构
[1] Zhejiang Univ, Dept Ocean Engn, 866 Yuhangtang Rd, Hangzhou 310058, Zhejiang, Peoples R China
[2] State Ocean Adm, Inst Oceanog 2, State Key Lab Satellite Ocean Environm Dynam, Hangzhou 310012, Peoples R China
基金
中国国家自然科学基金;
关键词
Submarine high-voltage cables; Multi-layered sediment characteristics; Heat transfer; Finite element methods; Electromagnetic heat coupling; Porous media; NUMERICAL-SIMULATION; HEAT DISSIPATION; POWER-CABLES; AMPACITY;
D O I
10.1016/j.oceaneng.2021.110030
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
The safe and efficient operation of submarine high-voltage cables depends on their thermal performance. Based on the electromagnetic heat coupling and heat transfer theory, the cables' heat dissipation in multi-layered sediments is simulated using FEM. The proposed models are validated by comparing with the results of IEC 60287 and illustrated the limitation of IEC 60287 which ignores convective heat transfer. Further, the width of the cable embedding layers greater than 9 m can promote heat dissipation when the permeability of the cable embedding layer is relatively high, but the effect of depth is less pronounced. Also, the cable temperatures increase with the decrease of sediments thermal conductivity and increase of the buried depth when permeability is below 10(-12) m(2). The temperature decreases as the permeability increases, the range of decay is between 10% and 55% when the permeability reaches 10(-9) m(2). The heat dissipation is great when the permeability is greater than 10(-11) m(2). When the characteristic of the cable embedding layers is different from its upper and lower layers, the high permeability of the upper layers reduces the cable conductor temperature more efficiently than the lower layers. The findings give some reference in improving the transmission efficiency of cables.
引用
收藏
页数:11
相关论文
共 46 条
[11]   Effects of backfilling on cable ampacity analyzed with the finite element method [J].
de Leon, Francisco ;
Anders, George J. .
IEEE TRANSACTIONS ON POWER DELIVERY, 2008, 23 (02) :537-543
[12]   Influence of Different Types of Magnetic Shields on the Thermal Behavior and Ampacity of Underground Power Cables [J].
del Pino Lopez, Juan Carlos ;
Cruz Romero, Pedro .
IEEE TRANSACTIONS ON POWER DELIVERY, 2011, 26 (04) :2659-2667
[13]  
Dix J., 2017, OFFSHORE SITE INVEST
[14]  
Dix J K., 2017, OFFSHORE SITE INVEST, P88
[15]   Comparative Levelized Cost of Energy Analysis [J].
Ebenhoch, Raphael ;
Matha, Denis ;
Marathe, Sheetal ;
Cortes Munoz, Paloma ;
Molins, Climent .
12TH DEEP SEA OFFSHORE WIND R&D CONFERENCE, (EERA DEEPWIND 2015), 2015, 80 :108-122
[16]   The thermal regime around buried submarine high-voltage cables [J].
Emeana, C. J. ;
Hughes, T. J. ;
Dix, J. K. ;
Gernon, T. M. ;
Henstock, T. J. ;
Thompson, C. E. L. ;
Pilgrim, J. A. .
GEOPHYSICAL JOURNAL INTERNATIONAL, 2016, 206 (02) :1051-1064
[17]   Coupling heat and buoyant fluid flow for thermal performance assessment of geothermal piles [J].
Ghasemi-Fare, Omid ;
Basu, Prasenjit .
COMPUTERS AND GEOTECHNICS, 2019, 116
[18]   COMPRESSIONAL-WAVE ATTENUATION IN MARINE SEDIMENTS [J].
HAMILTON, EL .
GEOPHYSICS, 1972, 37 (04) :620-+
[19]   Thermal analysis of power cable systems in a trench in multi-layered soil [J].
Hanna, MA ;
Chikhani, AY ;
Salama, MMA .
IEEE TRANSACTIONS ON POWER DELIVERY, 1998, 13 (02) :304-309
[20]  
Hao YP, 2017, 2017 1ST INTERNATIONAL CONFERENCE ON ELECTRICAL MATERIALS AND POWER EQUIPMENT (ICEMPE), P102, DOI 10.1109/ICEMPE.2017.7982061