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Discrete Element Method-Based Investigations of Granular Flow in a Pebble Bed Reactor

机译:基于离散元方法的卵石床反应器颗粒流研究

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In a pebble bed reactor (PBR) core, nuclear fuel in the form of pebbles moves slowly under the influence of gravity. Due to the dynamic nature of the core, a thorough understanding about slow and dense granular flow of pebbles is required from both a reactor safety point of view and a performance evaluation point of view. In the current study, validation of discrete element method (DEM)–based simulation for the pebble flow in a PBR was carried out. Validation of DEM-based simulations necessitates validation of the employed numerical method of simulating packed structure. Hence, a parametric sensitivity study of packing interaction properties was initially conducted and also validation of the numerical method simulating packed structure at first. The parametric sensitivity analysis suggests that static friction characteristics play an important role from a packed/pebble bed structural characterization point of view. In addition, the simulated packed structure approach has shown a good agreement with the available benchmark data. Afterward, the effect of two different half-cone angles of 30 deg and 60 deg on pebble flow field in a PBR was studied by EDEM~(TM)-based simulations. Results of streamlines, velocity radial profiles, and direct observation of discharge indicated a plug-type flow in the upper cylindrical region, whereas results indicated converging-type flow near the bottom conical region. EDEM~(TM) results of granular flow were validated against experimental benchmark data and show a fair agreement in terms of Lagrangian trajectories and velocity profile. Therefore, this validated EDEM~(TM)-based simulation can be used to obtain reliable results of pebble dynamics in a PBR and to enhance understanding of this phenomenon in a PBR. However, additional experimental investigations are recommended to be carried out for different sizes of test reactors, different bottom cone angles, and different sizes of pebbles to further assess DEM simulation results before using them for full-scale reactor simulations.
机译:在卵石床反应堆(PBR)堆芯中,卵石形式的核燃料在重力的作用下缓慢移动。由于堆芯的动态特性,从反应堆安全性的角度和性能评估的角度,都需要对卵石的缓慢而稠密的颗粒流有透彻的了解。在当前的研究中,对PBR中卵石流的基于离散元方法(DEM)的模拟进行了验证。基于DEM的仿真的验证需要验证所采用的模拟填充结构的数值方法的验证。因此,最初进行了填充相互作用特性的参数敏感性研究,并且首先验证了模拟填充结构的数值方法。参数敏感性分析表明,从填充/卵石床的结构表征角度来看,静摩擦特性起着重要的作用。此外,模拟打包结构方法与可用的基准数据显示出良好的一致性。然后,通过基于EDEM〜(TM)的模拟研究了30度和60度两个不同的半锥角对PBR中卵石流场的影响。流线结果,速度径向分布图和直接观察到的放电结果表明,在上部圆柱区域中出现了塞流,而在下部圆锥区域附近则表现出了会聚流。 EDEM〜(TM)颗粒流的结果已根据实验基准数据进行了验证,并且在拉格朗日轨迹和速度分布方面显示出合理的一致性。因此,这种经过验证的基于EDEMTM的仿真可用于获得PBR中卵石动力学的可靠结果,并增强对PBR中这种现象的理解。但是,建议针对不同大小的测试反应堆,不同的底部锥角和不同大小的卵石进行额外的实验研究,以进一步评估DEM模拟结果,然后再将其用于大规模反应堆模拟。

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