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Simulation scaling studies of reactor core two-phase flow using direct numerical simulation

机译:直接数值模拟的反应堆堆芯两相流模拟定标研究

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Tremendous growth in supercomputing power in recent years has resulted in the emergence of high-resolution flow analysis methods as an advanced research tool to evaluate single and two-phase flow behavior. In particular, unstructured mesh-based methods have been applied to analyze flows in complex reactor core geometries, including those of light water reactors (LWR). The finite-element based code, PHASTA, is utilized to perform large-scale simulations of two-phase bubbly flows in LWR geometries. Given the large computational cost of direct numerical simulation (DNS) coupled with interface tracking methods (ITM), typical domains encompass a portion of a single subchannel. In the presented research, the state-of-the-art analysis of turbulent two-phase flows in complex LWR subchannel geometries are demonstrated at both prototypical reactor parameters as well as scaled low pressure conditions. Three different cases are studied, a high-pressure simulation in prototypical reactor subchannel geometry, a low-pressure case in prototypical geometry and a final low-pressure case in a geometry scaled up to conserve the ratio between the bubble size and the domain pitch. Utilizing advanced statistical processing tools, these simulation conditions are compared to shed light on the relevancy of two-phase flow characteristics given the significant differences between LWR and low-pressure conditions. These findings can lead to the generation of useful guiding principles when researchers need to scale the two-phase flow behavior captured at low pressure and temperature conditions to those at reactor operating conditions.
机译:近年来,超级计算能力的飞速增长导致高分辨率流动分析方法的出现,作为评估单相和两相流动行为的高级研究工具。特别是,基于非结构网格的方法已被用于分析复杂反应堆堆芯几何形状中的流量,包括轻水反应堆(LWR)的形状。基于有限元的代码PHASTA用于在LWR几何中执行两相气泡流的大规模仿真。考虑到直接数值模拟(DNS)与接口跟踪方法(ITM)的巨大计算成本,典型域包含单个子信道的一部分。在目前的研究中,在原型反应堆参数以及按比例缩放的低压条件下,都证明了复杂的LWR子通道几何形状中湍流两相流的最新分析。研究了三种不同的情况,一种是在原型反应堆子通道几何形状中的高压模拟,一种是在原型几何形状中的低压情况,另一种是在几何尺寸中最终保留气泡尺寸和磁畴节距之比的最终低压情况。通过使用先进的统计处理工具,将这些模拟条件进行比较,以说明在LWR和低压条件之间存在显着差异的情况下,两相流动特性的相关性。当研究人员需要将在低压和低温条件下捕获的两相流动行为与在反应堆运行条件下的流动相进行比例缩放时,这些发现可能会导致产生有用的指导原则。

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