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Design of electric core simulator system (ECSS) for large-scale integral effect test facility

机译:大型整体效果测试设备的电芯模拟器系统(ECSS)的设计

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The second phase of STELLA program (STELLA-2) has been started to verify and validate the performance of DHRS of PGSFR, and the construction of the facility is expected to be completed in 2019. The STELLA-2 is not only aimed for investigation of decay heat removal characteristics but also demonstrates its performance while interacting with PHTS of pool-type design. For comprehensive understanding of the phenomena, all systems and components of significance in the reactor need to be modeled as closely as possible and the core is one of such significant areas to be taken into account. To simulate the thermal-fluidic behavior and to observe the Peak Cladding Temperature (PCT) phenomena in core, the Electric Core Simulator System (ECSS) has been designed through similarity consideration by the scaling analysis with conservation of dimensionless number groups under the global/local scaling law. In this paper, the design consideration and process of the electric heater rod and the ECSS is described. The equivalent property concept was introduced and the thermal-fluidic behavior in PHTS pool was also conserved. Finally, the ECSS design was evaluated by MARS-LMR code and the comparison result between reactor core and that of ECSS in STELLA-2 is also described. (C) 2019 Elsevier Ltd. All rights reserved.
机译:STELLA计划的第二阶段(STELLA-2)已开始,以验证和验证PGSFR的DHRS的性能,该设施的建设预计将于2019年完成。STELLA-2不仅旨在调查与池型设计的PHTS相互作用时,它不仅具有衰减排热的特性,而且还展示了其性能。为了全面了解该现象,必须对反应堆中所有重要的系统和组件进行尽可能接近的建模,并且堆芯是需要考虑的重要领域之一。为了模拟热流体行为并观察铁心中的峰值熔覆温度(PCT)现象,通过基于比例分析的相似性考虑,设计了电铁心模拟器系统(ECSS),并保留了全局/局部下的无量纲数组缩放定律。本文介绍了电加热棒和ECSS的设计考虑和过程。引入了等效特性概念,并保留了PHTS池中的热流行为。最后,通过MARS-LMR代码对ECSS设计进行了评估,并描述了反应堆堆芯与STELLA-2中ECSS堆芯的比较结果。 (C)2019 Elsevier Ltd.保留所有权利。

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