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Direct contact condensation modeling in pressure suppression pool system

机译:压力抑制池系统中的直接接触冷凝建模

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摘要

The pressure suppression pool of boiling water reactor as a safety system has vital importance from the nuclear reactor safety point of view and it is an interesting challenge for numerical simulations of flow with rapid phase change. This paper presents the recent analysis of computational fluid dynamics (CFD) simulations of chugging direct contact condensation (DCC) mode observed in the drywell-wetwell suppression pool (PPOOLEX) experiments of Lappeenranta University of Technology. A pattern recognition algorithm was employed to determine the bubble volume and the chugging frequency during the test. The numerical simulations were performed by using Eulerian-Eulerian two-fluid approach of the compressible flow NEPTUNE_CFD software and the OpenFOAM CFD code. The interfacial heat transfer between steam and water was modeled by using three DCC models. Flow turbulence was solved by employing two k-e turbulence models. The significance of interfacial area modeling on the chugging DCC was tested by implementing Rayleigh-Taylor Interfacial area model. The performance of different DCC models, the effects of turbulence modeling and interfacial area modeling are presented. The sensitivity of chugging DCC to the initial conditions and to the modeled domain, and the effect of interfacial momentum transfer closure modeling on the chugging are briefly discussed. The choice of DCC model, accuracy of interfacial area modeling and the magnitude of liquid turbulence near the interface are all needed to replicate chugging in a drywell-wetwell suppression pool system. In coarse grid case, the DCC model of Coste 2004 with the Rayleigh-Taylor interface instability model of Pellegrini et al. (2015) provided best results. (C) 2016 Elsevier B.V. All rights reserved.
机译:从核反应堆安全的角度来看,沸腾反应堆的压力抑制池作为安全系统具有至关重要的意义,这对于具有快速相变的流动数值模拟是一个有趣的挑战。本文介绍了最近在拉彭兰塔理工大学的干井湿井抑制池(PPOOLEX)实验中观察到的凝块直接接触冷凝(DCC)模式的计算流体力学(CFD)模拟分析。在测试过程中,采用模式识别算法确定气泡体积和颤动频率。使用可压缩流NEPTUNE_CFD软件和OpenFOAM CFD代码的欧拉-欧拉二流体方法进行了数值模拟。蒸汽和水之间的界面传热是通过使用三个DCC模型进行建模的。通过采用两个k-e湍流模型解决了流​​动湍流。通过实现瑞利-泰勒界面面积模型,测试了界面区域建模对凸块DCC的重要性。介绍了不同DCC模型的性能,湍流建模和界面面积建模的效果。简要讨论了换向DCC对初始条件和建模域的敏感性,以及界面动量传递封闭模型对换向的影响。 DCC模型的选择,界面区域建模的准确性以及界面附近液体湍流的大小,都是在干井湿井抑制池系统中重复制块的必要条件。在粗网格情况下,Coste 2004的DCC模型与Pellegrini等人的Rayleigh-Taylor界面不稳定性模型一起使用。 (2015年)提供了最佳结果。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2017年第9期|328-342|共15页
  • 作者单位

    LUT, Sch Energy Syst Nucl Engn, POB 20, FIN-53851 Lappeenranta, Finland;

    LUT, Sch Energy Syst Nucl Engn, POB 20, FIN-53851 Lappeenranta, Finland;

    LUT, Sch Energy Syst Nucl Engn, POB 20, FIN-53851 Lappeenranta, Finland;

    LUT, Sch Energy Syst Nucl Engn, POB 20, FIN-53851 Lappeenranta, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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