Charge Transport in Full-Size HVDC Cable Joint with Modeling of XLPE/EPDM Interface

被引:14
作者
Wang, Yani [1 ]
Wang, Yalin [2 ]
Yang, Xingwu [1 ]
Ma, Aiqing [1 ]
Sun, Yuanyuan [1 ]
Yin, Yi [2 ]
机构
[1] Shanghai Univ Elect Power, Coll Elect Engn, Shanghai, Peoples R China
[2] Shanghai Jiao Tong Univ, Dept Elect Engn, Sch Elect Informat & Elect Engn, Shanghai, Peoples R China
基金
上海市自然科学基金;
关键词
space charge; cable joint; XLPE; EPDM double layers; simultaneous measurement; temperature gradient; stress cone; SPACE-CHARGE; BEHAVIOR; CONDUCTION; INSULATION;
D O I
10.1109/TDEI.2021.009635
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Charge transport in high-voltage direct-current (HVDC) cable joint with complicated structure has not been profoundly investigated. In this study, a two-dimensional electrothermal coupled charge transport model combining finite element method (FEM) and bipolar charge transport algorithm is proposed, and the effects of temperature gradient and stress cone tilt angle on charge transport and electric field distribution in a 320 kV HVDC cable joint is investigated by this model. In the simulation, the interfacial area between the cross-linked polyethylene (XLPE) cable insulation and the ethylene-propylene-diene monomer (EPDM) joint insulation is specially modeled with different trap parameters from XLPE and EPDM. To obtain the simulation parameters, simultaneous measurements of space charge and relaxation current are performed on XLPE/EPDM double-layer samples, XLPE single-layer samples, and EPDM single-layer samples. It is found that with the increase of temperature gradient, more positive charges are injected and migrate from the inner side of XLPE insulation to the interface, thus, the charges accumulated at the interface change from negative to positive under large temperature gradient. At the same time, the position of the maximum electric field changes from the inner side of XLPE insulation to the root area of the stress cone at the interface. With the increase of the stress cone tilt angle, both the positive charges in XLPE insulation and the negative charges near the stress cone become less, and the overall maximum electric field first decreases and then increases under 20 degrees C temperature gradient.
引用
收藏
页码:2117 / 2125
页数:9
相关论文
共 34 条
[21]   Temperature-dependent DC conductivity and space charge distribution of XLPE/GO nanocomposites for HVDC cable insulation [J].
Du, B. X. ;
Han, Chenlei ;
Li, Jin ;
Li, Zhonglei .
IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION, 2020, 27 (02) :418-426
[22]   Study and Analysis of Conduction Mechanisms and Space Charge Accumulation Phenomena under High Applied DC Electric Field in XLPE for HVDC Cable Application [J].
Hascoat, A. ;
Castellon, J. ;
Agnel, S. ;
Frelin, W. ;
Egrot, P. ;
Hondaa, P. ;
Ammi, S. ;
Le Roux, D. .
2014 IEEE CONFERENCE ON ELECTRICAL INSULATION AND DIELECTRIC PHENOMENA (CEIDP), 2014, :530-533
[23]   A Study of Transient Electric Field Distribution of XLPE Cable Joint in a VSC-HVDC System [J].
Hu, Yuxiao ;
Ma, Hui ;
Ekanayake, Chandima ;
He, Shixiang ;
Zheng, Linzi ;
Xu, Yang .
2024 IEEE CONFERENCE ON ELECTRICAL INSULATION AND DIELECTRIC PHENOMENA, CEIDP, 2024,
[24]   Assessment of Thermal and Electric Field Characteristics of HVDC Cable According to the Inner Filler Size of XLPE [J].
Lee, Ho-young ;
Kwon, Ik-Soo ;
Asif, Mansoor ;
Jung, Chae-Kyun ;
Hwang, Jae-Sang ;
Kim, Min-Ju ;
Lee, Bang-Wook .
PROCEEDINGS OF THE 21ST INTERNATIONAL SYMPOSIUM ON HIGH VOLTAGE ENGINEERING, VOL 1, 2020, 598 :27-37
[25]   Polymeric HVDC cable design and space charge accumulation. Part 1: Insulation/semicon interface [J].
Fabiani, D. ;
Montanari, G. C. ;
Laurent, C. ;
Teyssedre, G. ;
Morshuis, P. H. F. ;
Bodega, R. ;
Dissado, L. A. ;
Campus, A. ;
Nilsson, U. H. .
IEEE ELECTRICAL INSULATION MAGAZINE, 2007, 23 (06) :11-19
[26]   Numerical Modeling of PD Pulses Formation in a Gaseous Void Located in XLPE Insulation of a Loaded HVDC Cable [J].
Mikrut, Pawel ;
Zydron, Pawel .
ENERGIES, 2023, 16 (17)
[27]   Numerical Analysis of Electric Field Characteristics and Interfacial Pressure of HVDC XLPE Cable Joint Considering Load Cycles [J].
Kim, Sun-Jin ;
Lee, Do-Gyu ;
Kim, Jae-Hyung ;
Lee, Bang-Wook .
ENERGIES, 2022, 15 (13)
[28]   Modelling charge transport in a HVDC cable using different softwares: from fluid models to macroscopic model [J].
Le Roy, S. ;
Vu, T. T. N. ;
Teyssedre, G. .
2019 2ND INTERNATIONAL CONFERENCE ON ELECTRICAL MATERIALS AND POWER EQUIPMENT (ICEMPE 2019), 2019, :337-340
[29]   Fundamental Research on Dielectric Breakdown between XLPE and Silicon Rubber Interface in HV Cable Joint [J].
Du, B. X. ;
Gu, L. ;
Zhang, Xiangjin ;
Zhu, Xiaohui .
ICPADM 2009: PROCEEDINGS OF THE 9TH INTERNATIONAL CONFERENCE ON PROPERTIES AND APPLICATIONS OF DIELECTRIC MATERIALS, VOLS 1-3, 2009, :97-+
[30]   Space Charge and Electric Field Characteristics in XLPE-Insulated Extrusion Molded Joint for HVDC Submarine Cables: Experiment and Simulation [J].
Li, Zhonglei ;
Zheng, Zhong ;
Wu, You ;
Du, Boxue .
IEEE TRANSACTIONS ON POWER DELIVERY, 2024, 39 (04) :2317-2326