Experimental Tests With Non-Uniformly Heated 19-Pins Fuel Bundle Cooled by HLM

M. Angelucci, I. Piazza, M. Tarantino, R. Marinari, G. Polazzi, V. Sermenghi
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Abstract

An experimental campaign was performed on a non-uniformly heated 19-pins wire-spaced fuel pin bundle simulator, cooled by Heavy Liquid Metal and installed in the NACIE-UP (NAtural CIrculation Experiment-UPgrade) facility located at the ENEA Brasimone Research Center (Italy). The experimental tests concerned mass flow rate transition of the primary coolant from forced to natural circulation, with fuel pin bundle simulator characterized by non-uniform power distribution. The main objective of the performed experimental campaign was to perform integral system and local thermal-hydraulic analysis, in particular to investigate the flow in different flow regimes and specifically the transition from forced to natural circulation flow and, more specifically, analyze the behavior of the 19-pins wire-spaced fuel pin simulator (FPS) during such transient. Indeed, the performed test were characterized by non-uniform heating of the bundle (i.e. just some pins switched on), so the effects of this non-uniformity on the local temperatures and on the overall system behavior was evaluated. A deep investigation on the local temperature distribution was performed thanks to the accurate instrumentation provided in the bundle (67 thermocouples). For instance, in some cases, the wall temperatures relative to pins switched off remained below the relative sub-channel temperature, depending on the heating distribution. The obtained experimental data provided useful information for the characterization of the bundle and the computation of the heat transfer coefficient. Moreover, the collected system data can be helpful for STH codes validation, whereas the local fuel bundle data, especially the ones from dissymmetric tests can be useful for the qualification and benchmarking of CFD codes and coupled STH/CFD methods for HLM systems.
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非均匀加热19针燃料束HLM冷却实验研究
在一个非均匀加热的19针线间距燃料针束模拟器上进行了实验,该模拟器由重液态金属冷却,并安装在位于意大利ENEA Brasimone研究中心的NACIE-UP(自然循环实验升级)设施中。利用功率分布不均匀的燃料销束模拟器进行了一次冷却剂由强制循环向自然循环质量流量转变的试验研究。所进行的实验活动的主要目的是进行整体系统和局部热水力分析,特别是研究不同流动状态下的流动,特别是从强制循环流动到自然循环流动的转变,更具体地说,分析19针线间隔燃料针模拟器(FPS)在这种瞬态过程中的行为。实际上,所进行的测试的特点是束的加热不均匀(即只有一些引脚接通),因此评估了这种不均匀性对局部温度和整体系统行为的影响。对当地的温度分布进行了深入的调查,这要归功于在束(67热电偶)中提供的精确仪器。例如,在某些情况下,根据加热分布,相对于关闭引脚的壁温度仍然低于相对子通道温度。得到的实验数据为热管束的表征和传热系数的计算提供了有用的信息。此外,所收集的系统数据可用于STH代码的验证,而局部燃料束数据,特别是来自不对称试验的数据可用于高强度混合动力系统CFD代码和STH/CFD耦合方法的鉴定和基准测试。
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