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Two-Phase Turbulence Statistics from High Fidelity Dispersed Droplet Flow Simulations in a Pressurized Water Reactor (PWR) Sub-Channel with Mixing Vanes

机译:从加压水反应器(PWR)子通道中高保真分散液滴流模拟的两相湍流统计

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In the dispersed flow film boiling regime (DFFB), which exists under post-LOCA (loss-of-coolant accident) conditions in pressurized water reactors (PWRs), there is a complex interplay between droplet dynamics and turbulence in the surrounding steam. Experiments have accredited particular significance to droplet collision with the spacer-grids and mixing vane structures and their consequent positive feedback to the heat transfer recorded in the immediate downstream vicinity. Enabled by high-performance computing (HPC) systems and a massively parallel finite element-based flow solver—PHASTA (Parallel Hierarchic Adaptive Stabilized Transient Analysis)—this work presents high fidelity interface capturing, two-phase, adiabatic simulations in a PWR sub-channel with spacer grids and mixing vanes. Selected flow conditions for the simulations are informed by the experimental data found in the literature, including the steam Reynolds number and collision Weber number (Wec={40,80}), and are characteristic of the DFFB regime. Data were collected from the simulations at an unprecedented resolution, which provides detailed insights into the continuous phase turbulence statistics, highlighting the effects of the presence of droplets and the comparative effect of different Weber numbers on turbulence in the surrounding steam. Further, axial evolution of droplet dynamics was analyzed through cross-sectionally averaged quantities, including droplet volume, surface area and Sauter mean diameter (SMD). The downstream SMD values agree well with the existing empirical correlations for the selected range of Wec. The high-resolution data repository from the simulations herein is expected to be of significance to guide model development for system-level thermal hydraulic codes.
机译:在水分散的流动膜沸腾制度(DFFB)下,在加压水反应器(PWR)中的基因座后(冷却剂失去的事故)条件下,在液滴动力学和周围蒸汽中的湍流之间存在复杂的相互作用。实验对与间隔栅格和混合叶片结构的液滴碰撞进行了特殊的意义,并将其与在近下游附近记录的传热的正反馈。通过高性能计算(HPC)系统和基于大量的基于元素的流动求解器-PHASTA(并行分层自适应稳定瞬态分析) - 这项工作提出了高保真界面捕获,两相,绝热模拟PWR子渠道与间隔栅格和混合叶片。通过文献中发现的实验数据通知用于模拟的所选流动条件,包括蒸汽雷诺数和碰撞韦伯号(WEC = {40,80}),并且是DFFB制度的特征。以前所未有的分辨率从模拟收集数据,该分辨率提供了对连续相紊乱统计的详细洞察,突出了液滴存在的影响和不同韦伯数对周围蒸汽中湍流的影响。此外,通过横截面平均量分析液滴动力学的轴向演变,包括液滴体积,表面积和燃烧器平均直径(SMD)。下游SMD值与所选WEC的现有经验相关性吻合良好。本文模拟中的高分辨率数据储存库预计对系统级热液压码的模型开发有重要性。

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