Simulation of control of lowpower-output steam turbines

Pub Date : 2023-07-20 DOI:10.24425/ather.2022.141975
Władysław Kryłłowicz, Jacek KARCZEWSKIb, P. Szuman, P. Szuman
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Abstract

Problems related to power control of low power-output steam turbines are analyzed. These turbines are designed to operate in distributed power generation systems. Principles of automatic control involving a single control valve are presented on the basis of experience gathered with high power-output turbines. Results of simulations of power control for a low power-output turbine are discussed. It has been proven that closing of the control system and an application of a power controller (of optimally selected parameters) improves the object dynamics (shortening of the transition period). At the same time, a lack of such optimization can results in occurrence of undesirable phenomena such as: overshoot in the generator power characteristics, elongation of the response time to disturbance or overshoot of turbine control valves.
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低功率输出汽轮机的控制仿真
分析了小功率输出汽轮机功率控制的有关问题。这些涡轮机设计用于分布式发电系统。根据大功率输出水轮机的经验,提出了单阀自动控制的原理。讨论了低功率输出汽轮机功率控制仿真结果。实验证明,控制系统的关闭和功率控制器的应用(参数的最优选择)改善了目标动力学(缩短了过渡周期)。同时,缺乏这种优化会导致发电机功率特性超调、对扰动的响应时间延长或水轮机控制阀超调等不良现象的发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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