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首页> 外文期刊>Nuclear Engineering and Design >Quasi-direct numerical simulation of a pebble bed configuration. Part Ⅰ: Flow (velocity) field analysis
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Quasi-direct numerical simulation of a pebble bed configuration. Part Ⅰ: Flow (velocity) field analysis

机译:卵石床结构的准直接数值模拟。第一部分:流场(速度)分析

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摘要

High temperature reactors (HTR) are being considered for deployment around the world because of their excellent safety features. The fuel is embedded in a graphite moderator and can sustain very high temperatures. However, the appearance of hot spots in the pebble bed cores of HTR's may affect the integrity of the pebbles. A good prediction of the flow and heat transport in such a pebble bed core is a challenge for available turbulence models and such models need to be validated. In the present article, quasi direct numerical simulations (q-DNS) of a pebble bed configuration are reported, which may serve as a reference for the validation of different turbulence modeling approaches. Such approaches can be used in order to perform calculations for a randomly arranged pebble bed. Simulations are performed at a Reynolds number of 3088, based on pebble diameter, with a porosity level of 0.42. Detailed flow analyses have shown complex physics flow behavior and make this case challenging for turbulence model validation. Hence, a wide range of qualitative and quantitative data for velocity and temperature field have been extracted for this benchmark. In the present article (part Ⅰ), results related to the flow field (mean, RMS and covariance of velocity) are documented and discussed in detail. Moreover, the discussion regarding the temperature field will be published in a separate article.
机译:高温反应堆(HTR)具有出色的安全性,因此正在考虑在全球范围内部署。燃料嵌入石墨减速器中,可以承受很高的温度。但是,HTR卵石床芯中热点的出现可能会影响卵石的完整性。对于可用的湍流模型,如何在这样的卵石床芯中很好地预测流动和传热是一个挑战,因此需要对此类模型进行验证。在本文中,报告了卵石床结构的准直接数值模拟(q-DNS),可为验证不同湍流建模方法提供参考。可以使用这样的方法以便对随机布置的卵石床进行计算。基于卵石直径,在雷诺数为3088且孔隙度为0.42的情况下进行模拟。详细的流动分析显示了复杂的物理流动行为,使这种情况对于湍流模型验证具有挑战性。因此,已经为此基准提取了速度和温度场的大量定性和定量数据。在本文(第一部分)中,记录并详细讨论了与流场(均值,RMS和速度协方差)相关的结果。此外,有关温度场的讨论将在另一篇文章中发表。

著录项

  • 来源
    《Nuclear Engineering and Design 》 |2013年第10期| 473-489| 共17页
  • 作者单位

    Nuclear Research and Consultancy Group (NRG), Petten, The Netherlands;

    Nuclear Research and Consultancy Group (NRG), Petten, The Netherlands;

    Nuclear Research and Consultancy Group (NRG), Petten, The Netherlands;

    Massachusetts Institute of Technology (MIT), United States;

  • 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
  • 中图分类
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