超超临界火电厂自动化控制系统设计

P. Kiruthika, P. Navaseelan, L. Senthilnathan
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引用次数: 1

摘要

本文的工作是利用DCS实现超超临界火电厂的过程自动化。大型超超临界电厂的控制是非常复杂和高度非线性的,因为它涉及到通过优化燃烧过程、提高蒸汽参数、降低凝汽器压力和提高汽轮机内部效率来提高电厂整体效率的多个参数的测量和控制。因此,监控系统如DCS/SCADA负责管理在这些环境中运行的关键基础设施。各种组件的控制,如一次性通过锅炉部件过热器(温度,压力,流量),再热器(温度,压力,流量),省煤器(温度,压力和流量),空气预热器(温度),燃烧器(空气/燃料比)和涡轮机运行条件是使用横河印度有限公司的CENTUM CS 3000实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated control system design for Ultra Supercritical thermal power plant
The work taken up for this paper is the implementation of process automation using DCS for Ultra Supercritical thermal power plant. The control of large scale ultra super critical power plant is very complicated and highly non linear because it involves the measurement and control of number of parameters in order to increase the overall plant efficiency by Optimizing the combustion process, increasing the steam parameters, reducing the condenser pressure and improving the internal efficiency of the steam turbines. Thus, Monitoring and control system such as DCS/SCADA are responsible for managing critical infrastructures operating in these environment. The control of various components such as once through boiler parts super heater (temperature, pressure, flow), reheater (temperature, pressure, flow), economiser (temperature, pressure and flow), air Preheater (temperature), burners (air/fuel ratio) and turbine operating conditions is implemented using the CENTUM CS 3000 of Yokogawa India ltd.
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