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首页> 外文期刊>Annals of nuclear energy >Effect of wall friction model on predicting emergency core coolant behavior in upper downcomer with direct vessel safety injection using MARS-KS
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Effect of wall friction model on predicting emergency core coolant behavior in upper downcomer with direct vessel safety injection using MARS-KS

机译:壁摩擦模型对使用MARS-KS进行直接容器安全注入的上降液管应急堆芯冷却液性能预测的影响

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摘要

For predicting more realistic flow behaviors, nuclear safety analysis code, MARS has adopted multidimensional module. However, most of the constitutive models in the module were developed based on onedimensional experimental results. In this study, the wall friction models in MARS were validated with two benchmark tests which were conducted by Korea Atomic Energy Research Institute (KAERI) for describing the direct ECC bypass phenomenon in the upper downcomer of the Advanced Power React 1400 (APR1400) during the reflood phase of a large-break LOCA (LBLOCA). One is the two-dimensional film flow experiment and the other is the MIDAS (multi-dimensional investigation on downcomer annulus simulation) test. Both simulation results showed that the Wallis correlation could improve the predictability yielding a stronger wall friction force than the H.T.F.S. correlation did. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了预测更现实的流动行为,核安全分析代码MARS采用了多维模块。但是,模块中的大多数本构模型都是基于一维实验结果开发的。在这项研究中,MARS的壁摩擦模型已通过韩国原子能研究院(KAERI)进行的两项基准测试进行了验证,该基准测试描述了Advanced Power React 1400(APR1400)上导管降速过程中的直接ECC旁路现象。大型LOCA(LBLOCA)的翻新阶段。一个是二维膜流实验,另一个是MIDAS(降液管环空模拟的多维研究)测试。两项仿真结果均显示,Wallis相关性可以提高可预测性,从而产生比H.T.F.S.更高的壁摩擦力。相关确实。 (C)2018 Elsevier Ltd.保留所有权利。

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