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Mechanism research on active power fluctuation caused by steam turbine valve test

机译:汽轮机阀试验引起的有源电力波动的机制研究

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摘要

To solve the problem of active power fluctuation and oscillation in the process of turbine's throttle steam valve activity test, the mechanism and solutions were studied based on the real accident data from a thermal power unit. Theoretical analysis on the test control logic, valve actuator and valve flow characteristic was performed, and the results show that the main reason for the power fluctuation is the large deviation between actual valve flow characteristic and the designed one in the process of turbine's throttle steam valve activity test. Moreover, the unreasonable control logic setting amplified the power fluctuation. After that, the reverse adjustment of primary frequency reset and power closed-loop control intensifies the fluctuation to power oscillation. The static and dynamic experiments both confirm that field test calibration of the valve flow characteristic is an effective way to reduce the active power fluctuation. Meanwhile, optimizing the control logic based on actuator's characteristic and operation parameters can also relieve or even eliminate the power fluctuation and oscillation.
机译:为了解决涡轮机节气门蒸汽阀活动试验过程中有源电力波动和振荡的问题,基于来自火电机的实际事故数据研究机制和解决方案。进行了测试控制逻辑,阀致动器和阀流量特性的理论分析,结果表明,功率波动的主要原因是实际阀流特性与涡轮机节气门蒸汽阀工艺中的实际偏差。活动测试。此外,不合理的控制逻辑设置放大了功率波动。之后,初级频率复位和功率闭环控制的反向调整将波动与功率振荡增强。静态和动态实验既确认阀流特性的现场测试校准是降低有效功率波动的有效方法。同时,根据执行器的特性和操作参数优化控制逻辑,也可以缓解或甚至消除功率波动和振荡。

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