A Comprehensive Suppression Scheme for Subsynchronous Torsional Vibration of Multiple Units under Multi-mode

Yong-mei Zhao, Yun-sheng Wu, Xiangrong Zhang
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Abstract

With the gradual implementation of China’s energy development strategic plan, a large number of coal power integration bases have been built and put into operation in recent 10 years, and series compensation capacitor in long-distance high-voltage AC or HVDC transmission has been adopted, which has brought about subsynchronous oscillation problem along with huge economic benefits. To solve the problem of subsynchronous oscillation and ensure the safe and stable operation of steam turbine generator units and power system is a challenging topic in the world. The shafting of a type of turbine generator unit usually has $3\sim 4$ natural torsional vibration frequencies. When the type of turbine generator unit increases in the system, the natural torsional vibration frequency also increases exponentially. Different natural torsional vibration frequencies have different coupling degrees with the electrical resonance of the series compensated output system, which leads to more complicated SSR. Taking the output system of series compensation after the expansion of Jinjie power plant as an example, the analysis and calculation are carried out, and the engineering application scheme of subsynchronous torsional vibration suppression of each unit shafting under multi model and multi-mode is proposed.
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多模态下多单元亚同步扭振综合抑制方案
随着中国能源发展战略规划的逐步实施,近10年来,一大批煤电一体化基地相继建成并投入运行,在长距离高压交流或高压直流输电中采用串联补偿电容,在带来巨大经济效益的同时,也带来了次同步振荡问题。解决汽轮发电机组和电力系统的次同步振荡问题,保证其安全稳定运行,是国际上具有挑战性的课题。某型汽轮发电机组的轴系通常具有$3\sim $ 4$的固有扭振频率。随着系统中汽轮发电机组类型的增加,系统固有扭振频率也呈指数增长。不同的固有扭振频率与串联补偿输出系统的电谐振耦合度不同,使得SSR更加复杂。以金杰电厂扩建后串联补偿输出系统为例,进行了分析计算,提出了多模式、多模式下各机组轴系次同步扭振抑制的工程应用方案。
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