首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >OPERATION AND CONTROL OF THE PBMR DEMONSTRATION POWER PLANT
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OPERATION AND CONTROL OF THE PBMR DEMONSTRATION POWER PLANT

机译:PBMR示范电厂的运行和控制

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A large interest in High Temperature Gas-cooled Reactors (HTGR) has been shown in recent years. HTGR power plants show a number of advantages over existing technology including improved safety, modular design and high temperatures for process heat applications. HTGR plants with closed loop direct cycle power conversion units have unique transient responses which is different from existing nuclear plants as well as conventional non-nuclear power plants. The operation and control for a HTGR power plant therefore poses new and different challenges. This paper describes the modes of operation for the Pebble Bed Modular Reactor (PBMR) demonstration plant. The PBMR demonstration plant is an advanced helium-cooled, graphite-moderated HTGR consisting of a closed loop direct cycle power conversion unit. The use of transient analysis simulation makes it possible to develop effective control strategies and design controllers for use in the power conversion unit as well as the reactor. In addition to plant controllers the operator tasks and operational technical specifications can be developed and evaluated making use of transient analysis simulation of the plant together with the control system. The main challenges in the operation and control of the reactor and power conversion unit are highlighted with simulation results. Control strategies in different operating regions are shown and results for the power conversion unit start-up transition and the loss of the grid connection during power operation are presented.
机译:近年来,人们对高温气冷堆(HTGR)表现出了极大的兴趣。与现有技术相比,HTGR电厂具有许多优势,包括改进的安全性,模块化设计以及用于过程热应用的高温。具有闭环直接循环功率转换单元的高温气冷堆电厂具有独特的瞬态响应,这与现有的核电厂以及传统的无核电厂不同。因此,高温气冷堆电厂的运行和控制带来了新的挑战。本文介绍了卵石床模块化反应堆(PBMR)示范工厂的运行模式。 PBMR示范工厂是先进的氦冷却,石墨调节的HTGR,由闭环直接循环功率转换单元组成。瞬态分析仿真的使用使得有可能开发出有效的控制策略并设计用于功率转换单元和电抗器的控制器。除工厂控制器外,还可以利用工厂的瞬态分析模拟和控制系统来制定和评估操作员的任务和操作技术规范。仿真结果突出显示了反应堆和功率转换单元在操作和控制方面的主要挑战。示出了在不同操作区域中的控制策略,并且给出了功率转换单元启动过渡的结果以及在功率操作期间电网连接的损失。

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