论文标题

反应堆下降几何形状中的低和单位prandtl数量流体的直接数值模拟

Direct Numerical Simulation of Low and Unitary Prandtl Number Fluids in Reactor Downcomer Geometry

论文作者

Tai, Cheng-Kai, Nguyen, Tri, Iskhakov, Arsen S., Merzari, Elia, Dinh, Nam, Bolotnov, Igor A.

论文摘要

浮力条件对非惯性冷却剂(例如液态金属和熔融盐)的对流传热的浮力作用是在短暂或意外情况下对晚期反应堆的关键安全系数。非单身prandtl流体的独特传热特征以及低流对流现象的固有复杂性需要发展新型的湍流和传热模型,这些模型适应于混合对流传热中涉及的不同时空尺度。在这项工作中,低流量混合对流的直接数值模拟是以具有工业利益的低到自动prandtl数量进行的。分析时间平均的统计数据,湍流的prandtl数量以及时间信号,以研究混合对流现象。从时间平均的统计数据开始,浮力羽流改变了速度边界层以及墙壁和通道中心线附近波动的强度。浮力效应还提供了不同程度的对流传热增强和损害取决于Prandtl和Richardson的数量。对钠混合对流案例进行了时间序列分析,以强调过渡区域的低PR混合对流行为。产生的功率光谱密度和小波谱图表明过渡区域可能存在较大的对流结构。未来的工作将着重于提供有关PR-RE-RI参数空间的更广泛的数据覆盖范围,以促进混合对流的更全面分析。

Buoyancy effect on low-flow condition convective heat transfer of non-conventional coolants, such as liquid metal and molten salts, is a crucial safety factor to advanced reactors under transient or accidental scenarios. The distinct heat transfer characteristics of non-unitary Prandtl fluids and the inherent complexity of the low-flow mixed convection phenomena requires the development of novel turbulent and heat transfer models that are adaptive to different spatiotemporal scales involved in the mixed convection heat transfer. In this work, direct numerical simulation of low-flow mixed convection is carried out at low-to-unitary Prandtl numbers that are of industrial interest. Time-averaged statistics, turbulent Prandtl number, as well as time signals are analyzed to investigate mixed convection phenomenon. From the time-averaged statistics, buoyant plume altered velocity boundary layer as well as the intensity of the fluctuation near both walls and channel centerline. Buoyancy effect also rendered different degree of convective heat transfer enhancement and impairment depends on Prandtl and Richardson number. Analysis of time series was conducted on the sodium mixed convection case to emphasize on the low-Pr mixed convection behavior at transition region. Resulting power spectra density and wavelet spectrogram suggests possible large convective structure in transition region. Future work will focus on providing broader data coverage on Pr-Re-Ri parameter space to facilitate more comprehensive analysis of mixed convection.

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