[1] 田雨果, 王彤, 邢其鹏, 等. 计及虚拟惯量控制与低电压穿越的光伏发电系统暂态稳定分析[J]. 电力系统保护与控制, 2022, 50(2): 52–59 TIAN Yuguo, WANG Tong, XING Qipeng, et al. Transient stability analysis of a photovoltaic generation system considering virtual inertia control and low voltage ride-through[J]. Power System Protection and Control, 2022, 50(2): 52–59 [2] 龚向阳, 周开河, 徐孝忠, 等. 含分布式光伏的配电网电压分区协调控制方案[J]. 电力系统及其自动化学报, 2018, 30(5): 127–133 GONG Xiangyang, ZHOU Kaihe, XU Xiaozhong, et al. Voltage partition coordinated control scheme for distribution network with distributed PV[J]. Proceedings of the CSU-EPSA, 2018, 30(5): 127–133 [3] 王婉婷. 雷电过电压对风-光混合发电系统的影响研究[J]. 电瓷避雷器, 2020(5): 176–182 WANG Wanting. Study on the influence of lightning overvoltage on wind-photovoltaic hybrid power generation system[J]. Insulators and Surge Arresters, 2020(5): 176–182 [4] 贺子鸣, 陈维江, 陈秀娟, 等. 多柱芯体并联结构避雷器暂态热特性计算方法[J]. 高电压技术, 2012, 38(8): 2129–2136 HE Ziming, CHEN Weijiang, CHEN Xiujuan, et al. Calculation method for transient thermal characteristics of multi-column parallel structure surge arrester[J]. High Voltage Engineering, 2012, 38(8): 2129–2136 [5] 张搏宇, 李光范, 张翠霞, 等. 污秽条件下避雷器的内部温升研究[J]. 高电压技术, 2011, 37(8): 2065–2072 ZHANG Boyu, LI Guangfan, ZHANG Cuixia, et al. Internal temperature rise of MOA under pollution condition[J]. High Voltage Engineering, 2011, 37(8): 2065–2072 [6] 沈海滨, 雷挺, 贺子鸣, 等. 再议10 kV线路避雷器雷电耐受技术参数的选用[J]. 电网技术, 2021, 45(9): 3729–3736 SHEN Haibin, LEI Ting, HE Ziming, et al. Selection of lightning tolerance technical parameters for 10 kV line arresters[J]. Power System Technology, 2021, 45(9): 3729–3736 [7] 郝双. 基于多物理场耦合的多柱避雷器温度场分析及结构改进[D]. 沈阳: 沈阳工业大学, 2020. HAO Shuang. Temperature field analysis and structure improvement of multi-column arrester based on multiphysical field coupling[D]. Shenyang: Shenyang University of Technology, 2020. [8] MAO Y X, ZHAO W X, ZHU S D, et al. Vibration investigation of spoke-type PM machine with asymmetric rotor considering modulation effect of stator teeth[J]. IEEE Transactions on Industrial Electronics, 2021, 68(10): 9092–9103. [9] 黎鹏, 肖盼, 屈莹莹, 等. 带长连续电流多重回击作用下500 kV避雷器温升特性分析[J]. 电工技术学报, 2020, 35(增刊2): 603–611 LI Peng, XIAO Pan, QU Yingying, et al. Temperature rise characteristics of 500 kV arrester under the action of multiple return-strokes with long continuous current[J]. Transactions of China Electrotechnical Society, 2020, 35(S2): 603–611 [10] LI S Z, HAN Y, LIU C Z. Coupled multiphysics field analysis of high-current irregular-shaped busbar[J]. IEEE Transactions on Components, Packaging and Manufacturing Technology, 2019, 9(9): 1805–1814. [11] 谢裕清, 李琳, 宋雅吾, 等. 油浸式电力变压器绕组温升的多物理场耦合计算方法[J]. 中国电机工程学报, 2016, 36(21): 5957–5965,6040 XIE Yuqing, LI Lin, SONG Yawu, et al. Multi-physical field coupled method for temperature rise of winding in oil-immersed power transformer[J]. Proceedings of the CSEE, 2016, 36(21): 5957–5965,6040 [12] 杨毅. 配网10 kV氧化锌避雷器电热特性仿真与试验研究[D]. 长沙: 长沙理工大学, 2019. YANG Yi. Simulation and experimental study on electro-thermal characteristics of 10 kV zinc oxide arrester in distribution network[D]. Changsha: Changsha University of Science & Technology, 2019. [13] 律方成, 张启哲, 王胜辉, 等. 动车组车顶避雷器温度分布测量及缺陷仿真研究[J]. 电网技术, 2022, 46(3): 1223–1231 LV Fangcheng, ZHANG Qizhe, WANG Shenghui, et al. Temperature distribution measurement and defect simulation of roof arrester of EMU[J]. Power System Technology, 2022, 46(3): 1223–1231 [14] LI S Z, XU W. Vibration analysis of permanent magnet synchronous motor using coupled finite element analysis and optimized meshless method[J]. Nonlinear Dynamics, 2022, 108(1): 167–189. [15] 张建平, 胡慧瑶, 吴淑英, 等. 正交各向异性相变材料的无网格法传热模型及应用[J]. 太阳能学报, 2022, 43(3): 242–250 ZHANG Jianping, HU Huiyao, WU Shuying, et al. Meshless heat transfer analysis model of orthotropic phase change materials and its application[J]. Acta Energiae Solaris Sinica, 2022, 43(3): 242–250 [16] BOURANTAS G, ZWICK B F, JOLDES G R, et al. Simple and robust element-free Galerkin method with almost interpolating shape functions for finite deformation elasticity[J]. Applied Mathematical Modelling, 2021, 96: 284–303. [17] 曹金. 基于无网格与有限元耦合法的大地电磁三维正演研究[D]. 长春: 吉林大学, 2022.
CAO Jin. Three-dimensional magnetotelluric forward modelling based on an EFGM-FEM coupling method[D]. Changchun: Jilin University, 2022. [18] WANG L H, QIAN Z H. A meshfree stabilized collocation method (SCM) based on reproducing kernel approximation[J]. Computer Methods in Applied Mechanics and Engineering, 2020, 371: 113303. [19] WU S W, XIANG Y. A weak-form meshfree coupled with infinite element method for predicting acoustic radiation[J]. Engineering Analysis With Boundary Elements, 2019, 107: 63–78. [20] 谢颖, 李洋洋, 单雪婷. 笼型感应电机流体流动对温度场分布的影响[J]. 电机与控制学报, 2017, 21(2): 55–62 XIE Ying, LI Yangyang, SHAN Xueting. Influences of 3 D fluid field for squirrel-cage induction motors on thermal field distribution[J]. Electric Machines and Control, 2017, 21(2): 55–62 [21] 周甜, 李自品, 沈泉宇, 等. GIS隔离开关触头温升多场耦合数值计算与分析[J]. 中国电力, 2018, 51(2): 13–20 ZHOU Tian, LI Zipin, SHEN Quanyu, et al. The numerical analysis on temperature rise multiphysics coupling of GIS disconnector contacts[J]. Electric Power, 2018, 51(2): 13–20 [22] 姜志鹏, 周辉, 宋俊燕, 等. 干式空心电抗器温度场计算与试验分析[J]. 电工技术学报, 2017, 32(3): 218–224 JIANG Zhipeng, ZHOU Hui, SONG Junyan, et al. Temperature field calculation and experimental analysis of dry-type air-core reactor[J]. Transactions of China Electrotechnical Society, 2017, 32(3): 218–224 [23] 梁正波, 李丽君, 彭超, 等. 暂态负荷下高压直流海底电缆热传递过程[J]. 中国电力, 2020, 53(9): 133–140 LIANG Zhengbo, LI Lijun, PENG Chao, et al. Heat transfer process of HVDC submarine cables under transient load[J]. Electric Power, 2020, 53(9): 133–140 [24] DELGADO F, RENEDO C J, ORTIZ A, et al. 3 D thermal model and experimental validation of a low voltage three-phase busduct[J]. Applied Thermal Engineering, 2017, 110: 1643–1652. [25] QIN X, SHEN Y J, CHEN W, et al. Bending and free vibration analyses of circular stiffened plates using the FSDT mesh-free method[J]. International Journal of Mechanical Sciences, 2021, 202/203: 106498. [26] 张雄, 刘岩. 无网格法[M]. 北京: 清华大学出版社, 2004. [27] 苑吉河, 张曦, 黄雪昀, 等. 氧化锌压敏电阻在直流环境下的老化机理研究[J]. 电瓷避雷器, 2018(1): 143–147 YUAN Jihe, ZHANG Xi, HUANG Xueyun, et al. Research on the aging mechanism of ZnO varistor under the direct current environment[J]. Insulators and Surge Arresters, 2018(1): 143–147
|