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首页> 外文期刊>Thermal engineering >Upgrading the Control Systems of Turbines of K-160-12.8 Type Produced by PAO Turboatom
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Upgrading the Control Systems of Turbines of K-160-12.8 Type Produced by PAO Turboatom

机译:升级PAO Turboatom生产的K-160-12.8型涡轮机控制系统

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摘要

Steam turbines of a K-160-12.8 (PVK-150) type produced by PAO Turboatom are operated at thermal power plants from the 1960s and many of them still have the complete set that was installed at that time by the factory, but they have become out of date. For this reason, the problem of upgrading the turbines to bring their characteristics into compliance with modern requirements is relevant. This article describes the main technical decisions adopted by PAO Turboatom when upgrading the automatic control system (ACS) of a K-160-12.8 (PVK-150) turbine: replacing the control valves (CV); replacing the distributing mechanism; replacing the front support components, including the main servomotor and oil control pipes; and replacing the assembly of cutoff spools by separate spools of servomotors of high-pressure control valves and reheat control valves. The schematic diagram of the ACS and description of the structure of newly installed mechanisms are presented: the cutoff spools, the high-pressure CVs, the distribution mechanism, and the main servomotor. The particularity of the ACS is the presence of electromechanical converters, which are used in each cutoff spool. For improving operating reliability of the ACS by providing the actuation of servomotors of control valves for closing regardless of ACS commands, the connection of rods of the electromechanical converter and cutoff spools are made using spring-type uncoupling devices. For actuation of the protection system by the commands of the automatic electronic safety device, the separate actuator driven by an electromagnet is installed in the ACS. During further improvement of the protection system, it is recommended to replace the controller assembly by two-spool protection devices, remove the protection spool assembly, and increase the pressure in the protection lines up to power pressure. The upgrading during this project was carried out by the Dobrotvor TPP (Ukraine).
机译:由PAO Turboatom生产的K-160-12.8(PVK-150)型蒸汽轮机从1960年代开始在火力发电厂中运行,其中许多仍具有当时工厂安装的成套设备,但它们具有变得过时了。因此,需要对涡轮进行升级以使其特性符合现代要求。本文介绍了PAO Turboatom在升级K-160-12.8(PVK-150)涡轮机的自动控制系统(ACS)时采用的主要技术决策:更换控制阀(CV);更换控制阀(CV)。更换分配机制;更换前支撑组件,包括主伺服电机和油控制管;并用高压控制阀和再热控制阀的伺服电机的单独阀芯代替截止阀芯的组件。介绍了ACS的示意图和新安装机构的结构说明:截止阀芯,高压CV,分配机构和主伺服电机。 ACS的特殊之处在于存在机电式转换器,该转换器用于每个截止阀芯中。为了通过不管ACS命令如何提供用于关闭的控制阀的伺服电动机的致动来提高ACS的操作可靠性,机电转换器的杆和截止阀芯的连接使用弹簧型解耦装置进行。为了通过自动电子安全装置的命令来启动保护系统,在ACS中安装了由电磁体驱动的独立执行器。在进一步改进保护系统的过程中,建议用两阀芯保护装置更换控制器组件,拆下保护阀芯组件,并将保护管路中的压力提高到动力压力。该项目期间的升级由Dobrotvor TPP(乌克兰)进行。

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