特罗伊茨克地区电厂660mw机组CLN660-24.2/566/566汽轮机强制空气冷却时间的计算依据

IF 0.9 Q4 ENERGY & FUELS
M. V. Fedorov, Yu. A. Radin, T. S. Kontorovich
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引用次数: 0

摘要

在Troitsk地区发电厂(PJSC批发发电公司2号分公司),一台660兆瓦的燃煤发电机组正在运行。动力装置配备中华人民共和国制造的CLN660-24.2/566/566冷凝汽轮机。在动力机组的多种运行模式中,汽轮机冷却模式起着至关重要的作用;当涡轮机停机进行设备维修时,这些模式非常重要,因为其外壳部件在自然条件下冷却到可接受的温度(150°С),在此温度下,隔热层可以从涡轮高温外壳上拆除,长达170-200小时。这产生了强制冷却的需要,可以通过在负载下使用蒸汽,空气或这两种方法的组合来实现。最后一个选项被认为是最有效的。本文介绍了应用现有技术冷却高中压组合式汽缸的效果。利用各种技术,特别是ANSYS软件系统实现的有限元法,计算了完成涡轮强制冷却所需的时间。考虑了汽轮机关键部件的热应力状态和汽轮机低周疲劳强度,进行了冷却时间的计算评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculated Substantiation of the Time Taken to Forcedly Cool Down with Air the CLN660-24.2/566/566 Steam Turbine of the Troitsk District Power Plant 660 MW Power Unit

At the Troitsk District Power Plant (a Branch of PJSC Wholesale Generating Company No. 2), a 660 MW coal fired power unit is in operation. The power unit is equipped with a CLN660-24.2/566/566 condensing steam turbine manufactured in the People’s Republic of China. Among the power unit’s variable operation modes, the steam turbine cooling down modes play an essential role; these modes are of importance when the turbine is shut down for carrying out equipment repairs, because its casing parts cool under natural conditions to acceptable temperatures (150°С), at which thermal insulation can be dismantled from the turbine high-temperature casings, for as long as 170‒200 h. This generates the need to perform forced cooldown, which can be carried out by using steam under load, air, and combination of these two methods, with the last option regarded to be the most effective one. The article presents the result of applying the currently existing technologies for cooling down the combined high and intermediate pressure cylinder. The time taken to accomplish the turbine forced cooldown was estimated by calculation with the use of various techniques, in particular, the finite element method implemented by means of the ANSYS software system. The calculated assessment of the cooldown time was carried out with taking into account the thermally stressed state of the key “critical” components and the steam turbine low cycle fatigue strength.

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CiteScore
1.30
自引率
20.00%
发文量
94
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