汽轮机蒸汽管内蒸汽压力波动对电力系统稳定性的影响

Han Zhiyong, H. Renmu, X. Yanhui
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引用次数: 6

摘要

低频振荡是电力系统中最重要的动态稳定问题之一,对电力系统的安全稳定有着重要的影响。近年来,中国多次出现低频振荡现象。介绍了可能导致电力系统低频功率振荡的一个新现象。在电厂试验中发现,调速系统的快速运行会引起汽轮机进汽管道压力振荡。压力振荡的频率在很大程度上取决于蒸汽进口管道的结构和尺寸。研究发现,蒸汽压力连续波动的频率在0.1~10 Hz范围内,覆盖了电力系统低频振荡的频率。蒸汽压力和动力系统之间可能发生相互作用。在单机无限母线模型的基础上,通过仿真研究了汽轮机调节阀的快速运行过程以及汽轮机蒸汽管内蒸汽压力波动对电力系统动态稳定性的影响。仿真结果表明,如果汽轮机调节阀快速运行引起的压力波动固有频率等于或接近电力系统固有振荡频率,则调节阀快速运行可能导致电力系统低频振荡。所得结论可为研究电力系统低频振荡的原因提供参考。
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Effect of steam pressure fluctuation in turbine steam pipe on stability of power system
Low frequency oscillation is one of the most important dynamic stability problems in power system, which has great effects on the security and stability of power system. In recent years, low frequency oscillation phenomenon occurred for many times in China. A new fact is introduced which may lead to low frequency power oscillation of power system. In a power plant experiment, it was found that the quick operation of governing system would cause the pressure oscillation in turbine steam inlet pipeline. The frequency of pressure oscillation depends heavily on the structure and size of steam inlet pipeline. It is found that the frequency of the steam pressure continuous fluctuation is in the range of 0.1~10 Hz, which cover the frequency of power system low frequency oscillation. The interaction between the steam pressure and the power system may be occurred. On the basis of single machine infinite bus model, the process of quick operation of steam turbine governing valve and the effect of steam pressure fluctuation in turbine steam pipe on power system dynamic stability was researched through the simulation. The simulation results indicate that the quick operation of steam turbine governing valve may lead to power system low frequency oscillation, if the natural frequency of pressure fluctuation caused by governing valve quick operation is equal or close to the power system natural oscillation frequency. The conclusion can provide reference to research into the causes of power system low frequency oscillations.
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