[1] 高嵩, 赵洁, 黄迪南. 1 000 MW超超临界二次再热燃煤发电技术[J]. 中国电力, 2017, 50(6): 6-11.
GAO Song, ZHAO Jie, HUANG Dinan. Double-reheat coal-fired power genaration technologies for 1 000-MW ultra-supercritical units[J]. Electric Power, 2017, 50(6): 6-11.
[2] 杨勤, 张世山, 杨宏强, 等. 泰州二期1 000 MW超超临界二次再热机组建设与运行[J]. 中国电力, 2017, 50(6): 38-42.
YANG Qin, ZHANG Shishan, YANG Hongqiang, et al. Construction and operation of the 1 000-MW ultra-supercritical double reheat unit in Taizhou Ⅱ[J]. Electric Power, 2017, 50(6): 38-42.
[3] 殷亚宁. 二次再热超超临界机组应用现状及发展[J]. 电站系统工程, 2013, 29(2): 37-38.
YIN Yaning. Application status and development of USC unit with double reheat cycles[J]. Power System Engineering, 2013, 29(2): 37-38.
[4] 徐敏杰, 胡兆光, 谭显东, 等. 中国中长期能源和电力需求及碳排放情景分析[J]. 中国电力, 2012, 45(4): 101-107.
XU Minjie, HU Zhaoguang, TAN Xiandong, et al. Scenario analysis on mid-long term energy and electricity demand carbon emission in China[J]. Electric Power, 2012, 45(4): 101-107.
[5] 师庆民, 赵迪斐, 高杨. 21世纪中国能源发展趋势展望[J]. 能源与节能, 2011(8): 3-4.
SHI Qingmin, ZHAO Difei, GAO Yang. Development trend of China's energy in the 21st century[J]. Energy and Energy Conservation, 2011(8): 3-4.
[6] 韩芳. 我国可再生能源发展现状和前景展望[J]. 可再生能源, 2010, 28(4): 137-140.
HAN Fang. Development status and prospect of renewable energy in China[J]. Renewable Energy Resources, 2010, 28(4): 137-140.
[7] 高林, 戴义平, 王江峰, 等. 机组一次调频参数指标在线估计方法[J]. 中国电机工程学报, 2012, 32(16): 62-68.
GAO Lin, DAI Yiping, WANG Jiangfeng, et al. An online estimation method of primary frequency regulation parameters of generation units[J]. Proceeding of the CSEE, 2012, 32(16): 62-68.
[8] 庄侃沁, 武寒, 黄志龙, 等. 龙政直流双极闭锁事故华东电网频率特性分析[J]. 电力系统自动化, 2006, 30(22): 101-104.
[9] 樊印龙, 张宝, 顾正皓, 等. 节流配汽汽轮机组一次调频经济代价分析[J]. 中国电力, 2016, 49(7): 86-89.
FAN Yinlong, ZHANG Bao, GU Zhenghao, et al. Analysis on economic cost of primary frequency regulation of throttling steam turbine units[J]. Electric Power, 2016, 49(7): 86-89.
[10] 邓拓宇, 田亮, 刘吉臻, 等. 超超临界直流锅炉蓄热能力的定量分析[J]. 动力工程学报, 2012, 32(1): 10-14.
DENG Tuoyu, TIAN Liang, LIU Jizhen, et al. Quantitative analysis on heat storage capacity of ultra-supercritical once-through boilers[J]. Journal of Chinese Society of Power Engineering, 2012, 32(1): 10-14.
[11] 陈林, 彭敏, 赵东, 等. 二次再热汽轮机组一次调频控制设计及应用[J]. 东方汽轮机, 2016, 1(3): 67-72.
CHEN Lin, PENG Min, ZHAO Dong, et al. Double-reheat steam turbine[J]. Dongfang Turbine, 2016, 1(3): 67-72.
[12] 傅望安, 沈冲. 基于纯滑压运行方式的一次调频性能优化在1 000 MW超超临界机组中的应用[J]. 电力建设, 2010, 31(11): 76-79.
FU Wangan, SHEN Chong. Application of optimized primary frequency modulation based on sliding pressure operation in 1 000 MW ultra-supercritical unit[J]. Electric Power Construction, 2010, 31(11): 76-79.
[13] 陈洪兴, 徐琴. 影响火电机组一次调频性能的问题分析[J]. 华东电力, 2014, 42(12): 2939-2942.
CHEN Hongxing, XU Qin. Influencing factors for primary frequency regulation of thermal power unit[J]. East China Electric Power, 2014, 42(12): 2939-2942.
[14] 张宝, 童小忠, 罗志浩, 等. 凝结水节流调频负荷特性测试与评估[J]. 浙江电力, 2013(2): 48-51.
ZHANG Bao, TONG Xiaozhong, LUO Zhihao, et al. Test and assessment on load characteristic of frequency modulation by condensate throttling[J]. Zhejiang Electric Power, 2013(2): 48-51.
[15] 许龙虎. 凝结水调频技术在泰州电厂的应用[J]. 勘测设计, 2016(4): 45-48.
XU Longhu. Application of condensating water frequency modulation technology in Taizhou Power Plant[J]. Electric Power Survey & Design, 2016(4): 45-48.
[16] 金飞, 唐广通, 杨春来. 给水一次调频新技术在超超临界机组中的应用[J]. 河北电力技术, 2016, 35(3): 30-32.
JIN Fei, TANG Guangtong, YANG Chunlai. Application of water supply primary frequency modulation new technology in ulatra supercritical unit[J]. Heibei Electric Power, 2016, 35(3): 30-32.
[17] 彭泽瑛, 顾德明. 补汽调节阀技术在百万千瓦全周进汽汽轮机中的应用[J]. 热力透平, 2004, 33(4): 223-227.
PENG Zeying, GU Deming. Overload valve technology in the 1 000 MW ultra-supercritical steam turbine[J]. Thermal Turbine, 2004, 33(4): 223-227.
[18] 陈小强, 罗志浩, 尹峰. 补汽调投用对1 000 MW机组夏季运行工况的影响[J]. 中国电力, 2011, 44(4): 63-66.
CHEN Xiaoqiang, LUO Zhihao, YIN Feng, et al. Influence of overload valve on 1 000 MW unit operation condition in summer[J]. Electric Power, 2011, 44(4): 63-66.
[19] 朱红兵, 刘晓宏, 曹剑锋, 等. 过载补汽技术在大型汽轮机中的应用[J]. 热力发电, 2014, 43(7): 128-130.
ZHU Hongbing, LIU Xiaohong, CAO Jianfeng, et al. Application of additionally supplying steam technology[J]. Thermal Power Generation, 2014, 43(7): 128-130.
[20] 包伟伟, 高敏, 庞浩城, 等. 1 000 MW超超临界机组补汽阀调节技术经济性分析[J]. 发电设备, 2016, 30(1): 11-15.
BAO Weiwei, GAO Min, PANG Haocheng, et al. Economic analysis on additional steam control technology for a 1 000 MW ultra supercritical unit[J]. Power Equipment, 2016, 30(1): 11-15. |