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DESIGN AND SCALING OF THE NATURAL CONVECTION SHUTDOWN HEAT REMOVAL TEST FACILITY

机译:自然对流关闭散热试验设施的设计与缩放

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The Natural convection Shutdown heat removal Test Facility (NSTF) at Argonne National Laboratory (ANL) reflects a 1/2 scale model of one conceptual design for passive safety in advanced reactors. The project was initiated in 2010 primarily to conduct ex-vessel, passive decay heat removal experiments in support of the Advanced Reactor Concepts (ARC), Small Modular Reactor (SMR), and Next Generation Nuclear Plant (NGNP) programs while also generating data for code validation purposes. The facility successfully demonstrated scoping objectives in late 2013, and is expected to begin testing by early 2014. The following paper summarizes some of the key design and scaling considerations used in construction of the experimental facility, along with an overview of the current instrumentation and data acquisition methods. Details of the distributed fiber optic temperature system will be presented, which introduces a level of data density suitable for CFD validation and is a first-of-its-kind for large-scale thermal hydraulics facilities.
机译:Argonne National Laboratory(ANL)的自然对流关闭散热试验设施(NSTF)反映了先进反应堆中的被动安全的一个概念设计的1/2规模模型。该项目于2010年启动,主要是为了进行先进的反应堆概念(ARC),小型模块反应器(SMR)和下一代核电站(NGNP)计划的支持,而是为此进行船舶而进行代码验证目的。该设施在2013年底成功地证明了范围目标,预计将于2014年初开始测试。下文总结了在实验设施建设中使用的一些关键设计和缩放考虑,同时概述了当前仪器和数据的概述采集方法。将提出分布式光纤温度系统的细节,这引入了适用于CFD验证的数据密度水平,是大型热液压设施的一类。

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