[1] |
VANDERVORT C. Advancements in H class gas turbines and combined cycle power plants[C]// Turbo Expo: Power for Land, Sea, and Air. Oslo, Norway: ASME Turbo Expo, 2018: 1-10.
|
[2] |
戈志华, 马立群, 何洁, 等. 燃气-蒸汽联合循环热电联产机组多种运行方式负荷特性研究[J]. 中国电机工程学报, 2020, 40(8): 2587-2597.
|
|
GE Zhihua, MA Liqun, HE Jie, et al. Study on load characteristics of multiple operation modes of gas-steam combined cycle cogeneration unit[J]. Proceedings of the CSEE, 2020, 40(8): 2587-2597.
|
[3] |
于兰兰. 燃气轮机联合循环部分负荷下性能优化研究[J]. 热力透平, 2016, 45(4): 275-278.
|
|
YU Lanlan. Performance optimization of gas turbine and combined cycle under partial-load[J]. Thermal Turbine, 2016, 45(4): 275-278.
|
[4] |
苏烨, 樊印龙, 尹峰, 等. 联合循环燃气轮机低负荷运行模式探讨与分析[J]. 浙江电力, 2014, 33(12): 35-37.
|
|
SU Ye, FAN Yinlong, YIN Feng, et al. Discussion and analysis on low-load operation mode of combined cycle gas turbines[J]. Zhejiang Electric Power, 2014, 33(12): 35-37.
|
[5] |
LIU Z, KARIMI I A. Simulation and optimization of a combined cycle gas turbine power plant for part-load operation[J]. Chemical Engineering Research and Design, 2018, 131: 29-40.
|
[6] |
HAO X, SUN L, CHI J, et al. Off-design performance of 9F gas turbine based on gPROMs and BP neural network model[J]. Journal of Thermal Science, 2022, 31(1): 261-272.
doi: 10.1007/s11630-022-1546-4
|
[7] |
SAMMAK M, HO C, DAWOOD A, et al. Improving combined cycle part load performance by using exhaust gas recirculation through an ejector[C]// Turbo Expo: Power for Land, Sea, and Air. Virtual, Online: ASME Turbo Expo, 2018: 1-10.
|
[8] |
JONSHAGEN K. Exhaust gas recirculation to improve part load performance on combined cycle power plants[C]// Turbo Expo: Power for Land, Sea, and Air. Seoul, South Korea: ASME Turbo Expo, 2016: 1-9.
|
[9] |
LIU Z, KARIMI I A. New operating strategy for a combined cycle gas turbine power plant[J]. Energy Conversion and Management, 2018, 171: 1675-1684.
|
[10] |
FAN K, YANG C, XIE Z, et al. Load-regulation characteristics of gas turbine combined cycle power system controlled with compressor inlet air heating[J]. Applied Thermal Engineering, 2021, 196: 117285.
|
[11] |
陈金伟, 陈梅珊, 梅姣姣, 等. 考虑环境温度和功率的燃气轮机进口可转导叶控制策略优化[J]. 上海交通大学学报, 2016, 50(4): 540-544.
|
|
CHEN Jinwei, CHEN Meishan, MEI Jiaojiao, et al. Optimization of IGV temperature control strategy for gas turbine considering ambient temperature and load[J]. Journal of Shanghai Jiao Tong University, 2016, 50(4): 540-544.
|
[12] |
王振, 段立强. 不同运行策略下燃气轮机联合循环变工况热经济性能分析[J]. 中国电机工程学报, 2021, 41(14): 4912-4922.
|
|
WANG Zhen, DUAN Liqiang. Off-design thermoeconomic performance analysis of gas turbine combined cycle under different operation strategies[J]. Proceedings of the CSEE, 2021, 41(14): 4912-4922.
|
[13] |
杨朝阳. 锅炉主、再热蒸汽超温分析及控制措施[J]. 科技视界, 2013, 21: 148-149.
|
|
YANG Chaoyang. Lord, reheat steam boiler overheating analysis and control measures[J]. Science & Technology Vision, 2013, 21: 148-149.
|
[14] |
YANG Y, BAI Z, ZHANG G, et al. Design/off-design performance simulation and discussion for the gas turbine combined cycle with inlet air heating[J]. Energy, 2019, 178: 386-399.
|
[15] |
黄超群, 王波, 张士杰, 等. F/G/H级重型燃气轮机联合循环底循环热力性能简明估算模型[J]. 中国电机工程学报, 2019, 39(21): 6320-6328.
|
|
HUANG Chaoqun, WANG Bo, ZHANG Shijie, et al. Concise estimation model of thermodynamic performance for bottom cycle of F/G/H-class heavy duty gas turbine combined cycle[J]. Proceedings of the CSEE, 2019, 39(21): 6320-6328.
|
[16] |
郑炯智, 张国强, 许彦平, 等. 顶底循环参数对燃气-蒸汽联合循环全工况性能影响分析[J]. 中国电机工程学报, 2016, 36(23): 6418-6431.
|
|
ZHENG Jiongzhi, ZHANG Guoqiang, XU Yanping, et al. Analysis of topping and bottoming cycle parameters on the performance of the combined cycle at design/off-design condition[J]. Proceedings of the CSEE, 2016, 36(23): 6418-6431.
|
[17] |
SANCHEZ J P, MARTINEZ J E A, CZERWIEC Z M, et al. Theoretical assessment of integration of CCS in the Mexican electrical sector[J]. Energy, 2019, 167: 828-840.
|
[18] |
JONSHAGEN K, SIPÖCZ N, GENRUP M. A novel approach of retrofitting a combined cycle with post combustion CO2 capture[J]. Journal of Engineering for Gas Turbines and Power, 2011, 133(1): 1-7.
|
[19] |
GE. Gatecycle User’s Guide, Version 5.32.0r[M]. USA: GE Enter Software LLC, 1989.
|
[20] |
LI K, CHI J, ZHANG S, Energy and exergy analysis of gas turbine combined cycle with exhaust gas recirculation under part-load conditions[J]. Journal of Mechanical Science and Technology, 2023, 37: 2149-2160.
|
[21] |
CRABOS DJTO. GE power systems gas turbine and combined cycle products[EB/OL]. (2003-02-01) [2023-07-01]. https://courses.washington.edu/mengr430/au07/handouts/ge/product_des.pdf.
|
[22] |
HACHEM J, SCHUHLER T, ORHON D, et al. Exhaust gas recirculation applied to single-shaft gas turbines: An energy and exergy approach[J]. Energy, 2022, 238: 121656.
|