Ways to increase the maneuverability characteristics of the CCGT when operating in load control modes (for example, CCGT-450)

E. Arakelyan
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Abstract

THE PURPOSE The article is devoted to the analysis of the problems that arise during the operation of heating CCGTs of the type CCGT-450 at reduced loads with their participation in the regulation of electrical and thermal loads. The description of the main limitations of the adjustment range of gas turbines, and the maneuverability characteristics of the CCGT, an analysis of some existing technical proposals for expanding the adjustment range is given. It is shown that the application of these proposals, expanding the boundaries of the adjustment range in small quantities, does not solve the problem as a whole. The description and research results of the proposed new technical solutions to expand the adjustment range and maneuverability characteristics of the CCGT - 450 are given.METHODS. When solving the tasks, the analysis, comparison and generalization of energy characteristics, modeling of modes were carried out.RESULTS. It is shown that: the use of methods for converting part of the central heating system and the central heating system as a whole of the T-125/150 steam turbine into a low-steam mode together with bypass steam distribution will expand the adjustment range to a level comparable to the adjustment range of condensing power units on gas-fuel oil;. when shutting down the CCGT-450 operating in condensation mode and when operating it in the GTU-CHP mode during periods of night failure of the electrical load, the conversion of the steam turbine to motor mode significantly improves the maneuverability and reliability characteristics of the steam turbine and the CCGT as a whole. conclusion. The use of methods for transferring part of the central heating system and central heating system as a whole and bypass steam distribution expand the adjustment range of the CCGT-450, respectively, by 7.8, 10.1 and 16.0% of the rated power; When the CCGT-450 is operating in condensation mode when the CCGT is stopped and when it is operating in the GTU-CHP mode during periods of night failure of the electric load, the steam turbine is transferred the MR significantly improves the maneuverability and reliability characteristics of the steam turbine by reducing the duration of start-up and loading of the steam turbine by 40 and 14.5 minutes, respectively, reducing starting fuel losses, eliminating temperature fluctuations of steam and metal of the steam intake organs of the central pump and the control stage during start-up;
增加CCGT在负荷控制模式下运行时的机动性特性的方法(例如,CCGT-450)
本文致力于分析CCGT-450型加热ccgt在减少负荷下运行过程中出现的问题,并参与电气和热负荷的调节。阐述了燃气轮机调节范围的主要局限性,分析了CCGT的机动性特点,分析了现有的一些扩大调节范围的技术方案。结果表明,这些建议的应用,扩大了小批量调整范围的边界,并不能从整体上解决问题。介绍了为扩大CCGT - 450的调节范围和机动性所提出的新技术方案,并给出了研究结果。在求解任务时,对能量特性进行了分析、比较和归纳,并对模态进行了建模。结果表明:采用将T-125/150汽轮机部分集中供热系统和整体集中供热系统转换为低蒸汽模式,并采用旁通配汽的方法,可将调节范围扩大到与燃气燃油冷凝动力机组调节范围相当的水平;在关闭冷凝模式运行的CCGT-450和在电力负荷夜间故障期间以GTU-CHP模式运行的CCGT-450时,汽轮机转电机模式显著提高了汽轮机和CCGT整体的机动性和可靠性。结论。采用部分集中供热、整体集中供热和旁通配汽的方式,使CCGT-450的调节范围分别扩大了额定功率的7.8、10.1和16.0%;当CCGT-450停机时处于冷凝模式运行,当CCGT-450在电力负荷夜间故障时处于GTU-CHP模式运行时,通过将汽轮机的启动时间和加载时间分别缩短40分钟和14.5分钟,减少启动燃料损失,显著提高了汽轮机的机动性和可靠性特性。消除启动时中央泵进汽机构及控制级蒸汽、金属温度波动;
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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