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An experimental study on natural circulation flow characteristics under passive IVR-ERVC conditions

机译:无源IVR-ERVC条件下天然循环流动特性的实验研究

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In vessel retention (IVR) of molten core debris via water cooling at the external surface of the reactor vessel is an important severe accident management feature of advanced passive plants. During postulated severe accidents, the heat generated by the molten debris relocated to the lower head of reactor pressure vessel needs to be removed continuously to prevent vessel failure.Besides the local critical heat flux (CHF) of outer wall surface which is of the first importance, a stable feature of natural circulation flow and an effective natural circulation capability within the external reactor vessel cooling (ERVC) channel tend to be rather crucial for the success of IVR. Under this circumstance, a full-height ERVC test infrastructure, reactor pressure vessel external cooling II test facility (REPEC-II) was designed and constructed in Shanghai Jiao Tong University (SJTU). During test campaign on the REPEC II facility, the one-dimensional natural circulation boiling flow characteristics with the experimental observation and measurement are investigated under IVR-ERVC conditions.Based on the abundant results acquired in the test campaign, it is attempt to evaluate the ERVC performances and trends under various practical engineered conditions in this paper. From this study, the following conclusions can be made: The influence of different power shapes on the two-phase natural circulation flow is not obvious, while the impact on the resistance characteristics of the outlet section is very significant. Among all the test conditions (power shapes, subcooling, flow path configuration and water level), the resistance characteristics of the outlet section change the most compared with other sections. It is expected that these conclusions may help designers to have a reliable estimate of the impact of some related engineered factors on real IVR-ERVC performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在反应器容器外表面的水冷料熔融核心碎片的血管保留(IVR)中是先进被动厂的重要事故管理特征。在假定的严重事故期间,需要连续去除由重新迁移到反应器压力容器的下部头部的熔融碎片产生的热量以防止血管衰竭。存在第一重要的外壁表面的局部临界热通量(CHF) ,外部反应器血管冷却(ERVC)通道内的自然循环流动(ERVC)通道内的有效自然循环能力的稳定特征对于IVR的成功而趋于至关重要。在这种情况下,在上海交通大学(SJTU)设计和建造了全高ERVC测试基础设施,反应堆压力容器外部冷却II试验设施(REPEC-II)。在REPEC II设施的测试活动期间,在IVR-ERVC条件下研究了实验观察和测量的一维自然循环沸腾流动特性。基于测试活动中获得的丰富结果,它试图评估ERVC本文在各种实用工程条件下的表演和趋势。从本研究开始,可以进行以下结论:不同功率形状对两相自然循环流的影响是不明显的,而对出口部分的电阻特性的影响非常显着。在所有测试条件(功率形状,过冷,流动路径配置和水位)中,出口部分的电阻特性与其他部分相比变化。预计这些结论可能有助于设计人员对一些相关工程因素对真实IVR-ERVC性能的影响进行可靠的估计。 (c)2019 Elsevier Ltd.保留所有权利。

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