首页> 外文会议>International conference on nuclear engineering >THERMAL AND STABILITY CONSIDERATIONS FOR A SUPERCRITICAL WATER-COOLED FAST REACTOR DURING PRESSURIZATION PHASE OF PLANT SLIDING PRESSURE STARTUP
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THERMAL AND STABILITY CONSIDERATIONS FOR A SUPERCRITICAL WATER-COOLED FAST REACTOR DURING PRESSURIZATION PHASE OF PLANT SLIDING PRESSURE STARTUP

机译:超临界水冷快速反应器在工厂滑行压力启动加压阶段的热稳定性考虑

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This paper describes the studies on the procedure of the pressurization phase of plant sliding pressure startup for the supercritical water-cooled fast reactor (SWFR). Thermal analysis and thermal-hydraulic stability analysis models for SWFR are developed and validated using the available references' experimental data. The models are then used to analyze the pressurization phase to obtain the available plant parameters from the points of view of the thermal-hydraulic and stability. The three hot channels, two seed assemblies with upward/downward flow and a blanket assembly during pressurization are analyzed at both beginning of equilibrium cycle (BOEC) and end of equilibrium cycle (EOEC). Results show that the proposed pressurization procedure of the plant sliding pressure startup for SWFR is feasible and both the thermal and stability criteria can be satisfied during the pressurization phase.
机译:本文描述了对超临界水冷快堆(SWFR)的工厂滑压启动加压阶段程序的研究。利用现有参考资料的实验数据,开发并验证了SWFR的热分析和热液压稳定性分析模型。然后将模型用于分析增压阶段,以从热工液压和稳定性的角度获得可用的设备参数。在平衡循环的开始(BOEC)和平衡循环的结束(EOEC)处,分析了三个热通道,两个具有向上/向下流动的种子组件和一个加压过程中的覆盖组件。结果表明,所提出的用于SWFR的设备滑动压力启动加压程序是可行的,并且在加压阶段可以同时满足热稳定性标准。

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