首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >CFD ANALYSIS OF TURBULENT MIXED CONVECTION UPWARD FLOW OF SUPERCRITICAL WATER IN A VERTICAL TUBE
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CFD ANALYSIS OF TURBULENT MIXED CONVECTION UPWARD FLOW OF SUPERCRITICAL WATER IN A VERTICAL TUBE

机译:垂直管内湍流混合对流向上流动的CFD分析

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A Computational Fluid Dynamics (CFD) model is developed for the prediction of heat transfer to supercritical water (SCW) flowing upwards in vertical tubes under the conditions of turbulent mixed convection. The model is validated using experimental data obtained under the operating conditions typical for SCW cooled reactors (SCWRs), namely: at a pressure of 24 MPa, an inner tube diameter of 10 mm, an inlet temperature of 320 or 350 °C and a heated tube length of 4 m. Four values of the mass flux (200, 500, 1000 and 1500 kg/m~2s) and various values of the wall heat flux (ranging from 129 to 729 kW/m~2) are considered. The physical properties of SCW are calculated by using the REFPROP software from National Institute of Standards and Technology (NIST). The model has been incorporated into the commercial general-purpose CFD software, PHOENICS. Various turbulence models and numerical grid settings are tested. The study has demonstrated a good agreement between the CFD predictions and the experimental data on the inside tube wall temperature and heat transfer coefficient with use of a two-layer low-Reynolds-number k-e turbulence model and a proper numerical grid spacing. However, this good agreement deteriorates appreciably under the influence of strong buoyancy forces at the lowest mass flux value of 200 kg/m~2s. Further research is required to improve the model's performance under these conditions. Practical recommendations are made regarding potential model applications in 3D analyses of SCWRs.
机译:建立了计算流体动力学(CFD)模型,用于预测在湍流混合对流条件下向垂直管中向上流动的超临界水(SCW)的热传递。使用在SCW冷却反应堆(SCWR)的典型运行条件下获得的实验数据对模型进行验证,这些条件是:在24 MPa的压力,10 mm的内管直径,320或350°C的入口温度以及加热的条件下。管长4 m。考虑了质量通量的四个值(200、500、1000和1500 kg / m〜2s)和壁热通量的各种值(从129到729 kW / m〜2)。 SCW的物理属性是使用美国国家标准技术研究院(NIST)的REFPROP软件计算的。该模型已合并到商业通用CFD软件PHOENICS中。测试了各种湍流模型和数值网格设置。通过使用两层低雷诺数k-e湍流模型和适当的数值网格间距,该研究证明了CFD预测与关于内管壁温度和传热系数的实验数据之间的良好一致性。但是,在最低质量通量值为200 kg / m〜2s的情况下,这种良好的一致性在强大的浮力的影响下会明显恶化。在这些条件下,需要进一步研究以改善模型的性能。针对SCWR的3D分析中的潜在模型应用提出了实用建议。

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