[1] 张殿生. 电力工程高压送电线路设计手册[M]. 北京:中国电力出版社,1999:291. [2] 冯云芬,贡金鑫,李宏男,等. 输电线路绝缘子、金具和导地线可靠度校准[J]. 电力建设,2014,35(5):21-27. FENG Yunfen, GONG Jinxin, LI Hongnan, et al. Reliability calibration of insulator, fitting and ground wire in transmission line [J]. Electric Power Construction, 2014, 35(5): 21-27. [3] 邹国林,从怀贤,吕泉根. 我国架空输电线路金具技术发展及应用[J]. 江苏电机工程,2012,31(6):82-84. ZUO Guolin, CONG Huaixian, LV Quangen. Development and application of Chinese overhead transmission line fitting technology [J]. Jiangsu Electrical Engineering, 2012, 31(6): 82-84. [4] 应伟国,刘建生. 输电线路采用节能金具及进行金具节能改造后的效果分析[J]. 电力设备,2008,9(5):28-31. YING Weiguo, LIU Jiansheng. Effect analysis using energy saving ironware and after energy saving reconstruction in transimission line [J]. Electrical Equipment, 2008, 9(5): 28-31. [5] 鲍迁. 预绞丝金具的特点[J]. 中国电力,2003,36(4):79-80. BAO Qian. The characteristics of the preformed fittings [J].Electric Power, 2003, 36(4): 79-80. [6] 廖维君,何炜斌,孙求国. 预绞式金具在高压送电线路中的应用[J]. 广东电力,2013,26(3):87-90. LIAO Weijun, HE Weibin, SUN Qiuguo. Application of preformed helical fitting in high voltage overhead transmission lines[J].Guangdong Eletraic Power, 2013, 26(3): 87-90. [7] 牛海军,付斌,朱宽军,等. 改性复合材料间隔棒和悬垂线夹的研制及应用[J]. 电力建设,2014,35(6):97-101. NIU Haijun, FU Bin, ZHU Kuanjun, et al. Development and application of spacer and suspension clamp based on modified composites [J]. Electric Power Construction, 2014, 35(6): 97-101. [8] 王少华,刘黎,刘浩军,等. 浙江电网输电线路智能化建设分析[J]. 中国电力,2012,45(1):69-72. WANG Shaohua, LIU Li, LIU Haojun, et al. Analysis of intelligent construction of transmission lines in Zhejiang power grid [J]. Electric Power, 2012, 45(1): 69-72. [9] 宋宁宁,王景朝,严行建. 高效节能系列电力金具的研制与应用[J]. 电网与清洁能源,2010,26(9):34-37. SONG Ningning, WANG Jingchao, YAN Xingjian. Development and application of a new series of energy-saving electric fittings[J]. Power System and Clean Energy, 2010, 26(9): 34-37. [10] 刘亮,胡松,唐波,等. 基于全寿命周期的输电线路设计[J]. 三峡大学学报:自然科学版,2014,36(2):41-45. LIU Liang, HU Song, TANG Bo, et al. Transmission line design based on life cycle[J]. Journal of China Three Gorges University: Natural Science Edition, 2014, 36(2): 41-45. [11] 岳增武,李辛庚,樊志彬,等. 输电铁塔腐蚀防护全寿命周期成本[J]. 中国电力,2015,48(2):150-155. YUE Zengwu, LI Xingeng, FAN Zhibin, et al. Research on corrosion protection life-cycle cost of transmission steel towers[J].Electric Power, 2015, 48(2): 150-155. [12] 梁宵,徐斌. 输电线路全寿命周期设计评价方法分析[J]. 吉林电力,2015,43(3):6-10. LIANG Xiao, XU Bin. Analysis on evaluation method of transmission lines full life cycle design[J]. Jilin Electric Power, 2015, 43(3): 6-10. [13] 郭峰,文凯,李广福. 输电线路全寿命周期成本设计[J]. 电力建设,2011,32(2):29-34. GUO Feng, WEN Kai, LI Guangfu. Design of life cycle costs for power transmission line[J]. Electric Power Construction, 2011, 32(2): 29-34. [14] 郑丽敏,武志涛,邹颖,等. 全寿命周期管理在输电线路设计中的应用[J]. 电网技术,2011,32(2):169-173. ZHENG Limin, WU Zhitao, ZOU Ying, et al. Life-cycle management concept in the design of transmission lines [J]. Power System Technology, 2011, 32(2): 169-173. [15] 布春磊,周海鹰,江明. 特高压直流输电线路大截面钢芯铝绞线选型研究[J]. 电力建设,2013,34(9):102-104. BU Chunlei, ZHOU Haiying, JIANG Ming. Selection of aluminium cable steel reinforced with large cross-section in UHVDC power transmission lines [J]. Electric Power Construction, 2013, 34(9): 102-104. [16] 李龙,苏良智,陈光. 基于LCC理论的输电线路绝缘子选型研究[J]. 能源技术经济,2012,24(3):52-58. LI Long, SU Liangzhi, CHEN Guang. Study of transmission line insulators selection based on LCC theory[J]. Energy Technology and Economics, 2012, 24(3): 52-58. [17] 国家能源局.电力建设工程预算定额 第四册 输电线路工程[M]. 北京:中国电力出版社,2013. |