全功率可变速抽水蓄能机组低水头启动过程动态特性研究

刘璋, 刘公成, 高院强, 张云鹏, 赵子文, 陈帝伊

振动与冲击 ›› 2024, Vol. 43 ›› Issue (24) : 225-233.

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振动与冲击 ›› 2024, Vol. 43 ›› Issue (24) : 225-233.
论文

全功率可变速抽水蓄能机组低水头启动过程动态特性研究

  • 刘璋,刘公成,高院强,张云鹏,赵子文,陈帝伊
作者信息 +

A study on dynamic characteristics of low head start-up process of a full-size converter variable speed pumped storage unit

  • LIU Zhang,LIU Gongcheng,GAO Yuanqiang,ZHANG Yunpeng,ZHAO Ziwen,CHEN Diyi
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文章历史 +

摘要

为了解决低水头工况下抽水蓄能机组启动的稳定性问题,本文结合变速技术提出全功率可变速抽水蓄能机组在低水头工况的启动策略,并对全功率可变速抽水蓄能机组低水头启动过程进行模拟。然后,启动转速作为影响变速机组低水头启动特性的重要参数,其对全功率可变速机组低水头工况的启动特性影响规律尚不明晰,因此,针对不同启动转速,分别探究了低水头下启动的动态运行轨迹以及机组的蜗壳压力、尾水管压力的启动动态特性以及励磁系统的启动特性。结果表明,本文提出的变速启动策略,可有效避免机组进入反“S”特性区,在相同初始开度、相同调速器控制等条件下,启动转速为82.5%-87.5%的全功率可变速机组均可快速达到稳态,并且启动运行区域呈现左移现象,机组的蜗壳压力趋于稳定,对励磁系统的影响很小,有利于从根本上解决低水头启动并网困难的问题。本研究为全功率变速机组以及“改造”后定速机组的启动策略提供决策支持。

Abstract

To address the issue of start-up stability in pumped-storage units under low head conditions, this paper introduces a start-up strategy that employs full-size converter variable speed operation in such conditions and simulates the start-up process for pumped-storage units with full-size converter variable speed. It is recognized that the starting speed is a crucial parameter influencing the start-up characteristics of variable speed units with low water head.   However, the specific impact of starting speed on the start-up traits of full-size converter variable speed units under low water head conditions remains uncertain. Consequently, this study delves into the dynamic operating trajectories and the starting characteristics, including volute pressure, draft pipe pressure, and excitation system responses, for a range of starting speeds under low water head conditions. The findings reveal that the variable speed start-up strategy presented herein effectively prevents the unit from entering the inverse "S" characteristic zone. With identical initial settings and governor controls, full-size converter variable speed units that commence start-up at speeds between 82.5% and 87.5% can achieve a stable operating state in a shorter time frame. The initiation of the full-size converter variable speed unit at a variable speed results in a leftward shift of the operational starting area along the characteristic curve, thereby enhancing the stability of the volute pressure within the unit. In addition, the impact on the excitation system is minimal, which is conducive to fundamentally solving the challenges brought by low head start-up and grid connection. The insights gained from this research offer valuable decision-making support for the start-up strategies of both full size converter variable speed unit and fixed speed unit post-modification.

关键词

抽水蓄能 / 可变速机组 / 低水头工况 / 反“S”特性 / 全功率

Key words

pumped storage / variable-speed unit / low head condition / S-shaped characteristic / full size converter

引用本文

导出引用
刘璋, 刘公成, 高院强, 张云鹏, 赵子文, 陈帝伊. 全功率可变速抽水蓄能机组低水头启动过程动态特性研究[J]. 振动与冲击, 2024, 43(24): 225-233
LIU Zhang, LIU Gongcheng, GAO Yuanqiang, ZHANG Yunpeng, ZHAO Ziwen, CHEN Diyi. A study on dynamic characteristics of low head start-up process of a full-size converter variable speed pumped storage unit[J]. Journal of Vibration and Shock, 2024, 43(24): 225-233

参考文献

[1] 张立春,杨梅,梁国才等. 全功率变频抽水蓄能机组工程设计与认识[J]. 水电与抽水蓄能,2023,9(02):45-53.
ZHANG Lichun,YANG Mei,LIANG Guocai, et al. Engineering Design and Realization of Full Size Converter 
Variable Speed Pumped Storage Units [J]. Hydropower and Pumped Storage, 2023,9(02):45-53.
[2] 申建建,王月,程春田等. 水风光互补系统灵活性需求量化及协调优化模型[J]. 水利学报,2022,53(11): 1291-1303.
SHEN Jianjian, WANG Yue, CHENG Chuntian, et al.Flexibility demand quantification and optimal operation model of water-wind-solar complementary sysrem[J].Journal of Hydraulic Engineering, 2022,53(11): 1291-1303.
[3] 郭俊勋,周大庆,陈会向,等.导叶波动对抽蓄机组低水头空载稳定影响分析[J].中国电机工程学报,2022,42(15):5587-5595.DOI:10.13334/j.0258-8013.pcsee.211615.
GUO Junxun, ZHOU Daqing, CHEN Huixiang, et al. Influence analysis of guide vane fluctuation rate on pump storage units under no-load condition of low head[J]. Proceedings of the CSEE, 2022, 45(15): 5587-5595. DOI: 10.13334/ j. 0258-8013.pcsee.211615.
[4] 冯陈. 抽水蓄能机组系统辨识与复杂工况下控制规律研究[D]. 武汉:华中科技大学, 2022.
FENG Chen. Study on system identification and control law under complex conditions of pumped storage unit [D]. Wuhan:Huazhong University of Science and Technology, 2022.
[5] Xu Y, Zheng Y, Du Y, et al. Adaptive condition predictive-fuzzy PID optimal control of start-up process for pumped storage unit at low head area[J]. Energy Conversion and Management, 2018, 177(12): 592-604.
[6] 赵志高,周建中, 张勇传等. 抽水蓄能机组复杂空载工况增益自适应PID控制[J]. 电网技术, 2018, 42(12): 3918-3927. 
ZHAO Zhigao, ZHOU Jianzhong, ZHANG Yongchuan, et al. Heuristic Gain-Scheduling Nonlinear PID Control of Pumped Storage Units Under Complicated No-Load Condition[J]. Power System Technology, 2018, 42(12):  3918-3927.
[7] Xu Y, Zhou J, Xue X, et al. An adaptively fast fuzzy fractional order PID control for pumped storage hydro unit using improved gravitational search algorithm[J]. Energy Conversion and Management, 2016, 111: 67-78.
[8] 史华勃, 王渝红, 滕予非等. 全功率变速抽水蓄能机组快速功率模式小信号建模[J]. 电力系统自动化,2022,46(04): 162-169.
SHI Huabo,WANG Yuhong,TENG Yufei,et al. Small signal modeling of variable-speed pumped storage unit with full-size converter in fast-power mode[J]. Automation of Electric Power Systems,2022,46(4):162-169.
[9] 杨正文. 全功率变速恒频抽蓄机组VSG控制策略研究[D]. 北京:北京交通大学, 2022.
YANG Zhengwen. Virtual synchronous generator control of variable speed pumped-storage unit with full-size converter[D].Beijing: Beijing Jiaotong University,2022.
[10] 范博然, 王奎,李永东等. 基于模块化多电平矩阵变流器的可调速抽水蓄能系统[J]. 电工技术学报, 2018, 33(S2): 511-518.
Fan Boran, Wang Kui, Li Yongdong, et al. Adjustable-Speed hydraulic pumped storage system based on the modular multilevel matrix converter[J]. TRANSACTIONS OF CHINA ELECTROTECHNICAL SOCIETY, 2018, 33(S2): 511-518.
[11] 畅欣, 韩民晓, 郑超. 全功率变流器可变速抽水蓄能机组的功率调节特性分析[J]. 电力建设, 2016, 37(04): 91-97.
CHANG Xin,HAN Minxiao,ZHENG Chao. Analysis of power regulation characteristics of variable speed pumped storage unit with full power converter[J]. Electric Power Construction,2016,37(4):91-97.
[12] Belhadji L, Bacha S, Munteanu I, et al. Adaptive MPPT Applied to Variable-Speed Microhydropower Plant [J]. IEEE Transactions on Energy Conversion, 2013, 28(1): 34-43.
[13] 畅欣. FSC可变速抽水蓄能机组功率调节特性研究[D]. 北京:华北电力大学, 2016.
CHANG Xin. Research on power control for variable speed pumped storage with full-size converter[D]. Beijing: North China Electric Power University, 2016.
[14] 衣传宝,梁廷婷,汪卫平,等. 全功率变速抽水蓄能机组无功优先控制策略研究[J]. 电力电容器与无功补偿, 2021, 42(01): 25-31.
YI Chuanbao,LIANG Tingting,WANG Weiping,et al. Study on Reactive Power Priority Control Strategy of Variable Speed Pumped Storage Unit with Full⁃sized Converter[J]. Power Capacitor & Reactive Power Compensation, 2021, 42(01): 25-31.
[15] 陈超, 汪卫平, 刘海滨,等. 全功率变速抽水蓄能机组用于提升电网频率稳定性控制策略研究[J].水电与抽水蓄能,2020, 6(05): 68-72.
CHEN Chao,WANG Weiping,LIU Haibin, et al. Study on the Control Strategy of FSC-VSPS for Improving the Frequency Stability of Power Grid[J]. Hydropower and Pumped Storage, 2020, 6(05): 68-72.
[16] 邵子轩,杨威嘉,廖溢文等. 全功率变流变速抽蓄机组水泵入力调节特性[J]. 水力发电学报, 2023, 42(04): 46-56.
SHAO Zixuan, YANG Weijia, LIAO Yiwen, et al. Power regulation characteristics of variable-speed pumped storage unit with full-size converter in pump mode [J]. Journal of Hydroelectric Engineering, 2023, 42(4): 46-56.
[17] 丁理杰, 史华勃, 陈刚, 等. 全功率变速抽水蓄能机组控制策略与调节特性[J].电力自动化设备, 2024, 44(03): 166-171+179.DOI:10.16081/j.epae.202306015.
DING Lijie,SHI Huabo,CHEN Gang, et al. Control strategy and regulation characteristics of variable speed pumped storage unit with full-size converter[J]. Electric Power Automation Equipment, 2024, 44(03): 166-171+179. DOI: 10.16081/j.epae.202306015.
[18] 姜海军, 戎刚, 史华勃等. 全功率变速抽水蓄能机组变速变功率协同控制策略研究[J]. 水电与抽水蓄能, 2022, 8(04): 31-36.
JIANG Haijun,RONG Gang,SHI Huabo, et al. Research on Coordinated Control Strategy between Power and Speed of Full Power Variable Speed Pumped Storage Unit[J]. Hydropower and Pumped Storage, 2022, 8(04): 31-36.
[19] Yanhe X U , Jianzhong Z , Xiaoming X ,et al.Fractional Order PID-based Regulation and Control of Pumped Storage Units Under No-load Condition[J].Automation of Electric Power Systems, 2015.DOI:10.7500/AEPS20140910005.
[20] 李红辉, 周建中, 张勇传, 等. 基于EWT和修正Morris法的抽水蓄能电站主进水阀自激振动研究[J].振动与冲击, 2019, 38(19): 52-57+76.DOI:10.13465/j.cnki.jvs.2019.19.009.
LI Honghui, ZHOU Jianzhong, ZHANG Yongchuan, et al. Self-excited vibration of pumped storage power station’smain inlet valve based on EWT and modified Morris method[J]. Journal of Vibration and Shock, 2019, 38(19): 52-57+76. DOI: 10.13465/j.cnki.jvs.2019.19.009.
[21] 刘志淼, 张德虎, 刘莹莹, 等. 水泵水轮机全特性的改进 Suter 变换方法[J]. 中国农村水利水电, 2015(1) : 143-145.
LIU Zhimiao, ZHANG Dehu, LIU Yingying, et al. New Suter-transformation method of complete characteristic curves of pump-turbines based on the 3-D surface[J]. China Rural Water and Hydropower, 2015(1) : 143-145.
[22] 郭鹏程, 郑小波, 张浩, 等. 一管多机布置抽水蓄能电站非线性动力学建模与瞬态分析[J]. 振动与冲击, 2021, 40(07): 105-111. DOI: 10.13465/j.cnki.jvs.2021.07.014.
GUO Pengcheng, ZHENG Xiaobo, ZHANG Hao, et al. Nonlinear dynamic modeling and transient analysis of pumped storage power station with one tube and multi-unit[J]. Journal of Vibration and Shock, 2021, 40(07): 105-111. DOI: 10.13465/j.cnki.jvs.2021.07.014.
[23] 吴嵌嵌, 张雷克, 马震岳. 水电站水机电-结构系统动力耦联模型研究及数值模拟[J]. 振动与冲击, 2017, 36(16) : 1-10.
WU Qianqian, ZHANG Leike, MA Zhenyue. The model analysis and numerical simulation of dynamic coupled hydraulic-mechanical-electric-structural system for hydropower station[J]. Journal of Vibration and Shock, 2017, 36(16) : 1-10.
[24] 许颜贺, 赵坤杰, 吕聪, 等. 基于水-机-电耦合模型的机组励磁优化控制[J]. 华中科技大学学报(自然科学版), 2021, 49(12): 28-33. DOI: 10.13245/j.hust.211206.
XU Yanhe, ZHAO Kunjie, LYU Cong, et al. Optimal control of excitation system of pumped storage unit based on hydraulic-mechanical-electrical coupling model[J].Journal of Huazhong University of Science and Technology(Natural Science Edition),2021,49(12):28-33.
[25] Hu Wanfeng, Wang Zhengwei, Fan Honggang. Grid synchronization of variable speed pump-turbine units in turbine mode[J]. Renewable Energy, 2021, 173: 625-638. DOI: 10.1016/j.renene.2021.04.012.
[26] 冯陈, 周大庆, 郑源, 等. 基于精细化建模的抽水蓄能机组低水头背靠背启动多目标优化[J]. 中国电机工程学报, 2023,43(08):3059-3071.DOI:10.13334/j.0258-8013.pcsee.212704.
FENG Chen, ZHOU Daqing, ZHENG Yuan, et al. Multi-objective Optimization of Back-to-back Starting Process for Pumped Storage Units at Low Head Area Based on Refined Model[J]. Proceedings of the CSEE, 2023, 43(08): 3059-3071. DOI: 10.13334/j.0258-8013.pcsee.212704.
[27] Ye H, Zhang L, Yang M, et al. Variable-speed Pumped Hydro Storage Technology: Overview, Solutions and Case Studies. 2021 6th International Conference on Power and Renewable Energy (ICPRE), Shanghai, China, 2021, 1273-1278.

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