Study on control system of a vapor condenser of nuclear power plant

Shou-Yu Cheng, Ruo-Jun Xue, M. Peng, Cheng Gong, Qiang Zhao
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引用次数: 1

Abstract

Now control system of condenser does not take into account the overall characteristics of the condenser, cooling water, exhaust system and hot well use single variable controller and their relations are not considered, the control system of condenser is not benefit to condenser in variable conditions or changing load case. In order to improve the working environment of the condenser of nuclear power plant in different conditions, this paper proposes a condenser controller base on coordinated control technology from the overall characteristics of the condenser, In order to verify & validate the feasibility of the coordinated controller of condenser, simulation experiment is carried out by the vapor condenser simulation models which can describe the dynamic behavior of a nuclear power shell-and-tube condenser. The simulation results show that the coordinated controller is better than the traditional controller for the condenser, the transients of the most variables are milder and faster to reach their final values in mode of coordinated controller.
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核电站蒸汽凝汽器控制系统的研究
目前的冷凝器控制系统没有考虑到冷凝器的整体特性,冷却水、排风系统和热井采用单变量控制器,没有考虑它们之间的关系,不利于冷凝器在变工况或变工况下的控制。为了改善核电站凝汽器在不同工况下的工作环境,从凝汽器的总体特点出发,提出了一种基于协调控制技术的凝汽器控制器,为了验证和验证凝汽器协调控制器的可行性,利用能够描述核电壳管式凝汽器动态行为的蒸汽凝汽器仿真模型进行了仿真实验。仿真结果表明,协调控制器对凝汽器的控制效果优于传统控制器,在协调控制器模式下,大多数变量的暂态更温和,达到最终值的速度更快。
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