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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part A. Defect and Diffusion Forum >Simulation of the Acoustic Loads Generated in the Intersection of a Main Steam Line and its Safety Relief Valve Branch of a BWR Plant under Extended Power Uprate Condition
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Simulation of the Acoustic Loads Generated in the Intersection of a Main Steam Line and its Safety Relief Valve Branch of a BWR Plant under Extended Power Uprate Condition

机译:扩展功率提升条件下BWR工厂主蒸汽管线及其安全泄放阀分支相交处产生的声负荷的模拟

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The structural integrity of a BWR nuclear power plant can be compromised due to severe dynamic loads. Acoustic loads coming from a Safety Relief Valve branch can be adversely amplified if the steam flow is increased at the Main Steam Piping. This phenomenon has been reported previously in one BWR nuclear power plant. Its steam dryer was fractured and loose parts were generated due to high-cycle fatigue. This event has driven the United States Nuclear Regulatory Commission to issue specific regulations to evaluate acoustic loads which would be detrimental to the BWR steam dryer. In this paper, the acoustic loads were simulated when the steam flow is incremented from normal operation conditions to an Extended Power Uprate condition. It was analyzed, when the output power was incremented 14% and 28%. The initial conditions were determined with Computational Fluid Dynamics under steady state condition. This data was used in subsequent transient analysis. The model of Large Eddy Simulation was used and the acoustic simulation was performed with the Fowcs Williams and Hawkings Method. The Power Spectral Density was obtained with Fast Fourier Transform. The frequency peaks were found between 148 Hz and 155 Hz. These results are consistent with those obtained with the Helmholtz model and other results reported in the open literature. The results show that the peak pressure can be increased up to six times in resonance conditions, corresponding to a power uprate of 28%.
机译:由于严重的动态载荷,BWR核电厂的结构完整性可能会受到损害。如果在主蒸汽管道上增加了蒸汽流量,则来自安全泄压阀分支的声音负载会受到不利影响。以前曾在一个BWR核电厂中报道过这种现象。其蒸汽干燥机破裂,由于高循环疲劳而产生松动的零件。此事件促使美国核监管委员会发布了特定的法规,以评估对BWR蒸汽干燥机有害的声负荷。在本文中,当蒸汽流量从正常运行状态增加到扩展功率提升状态时,模拟了声负荷。分析了输出功率分别增加14%和28%时的情况。初始条件由稳态条件下的计算流体动力学确定。该数据用于随后的瞬态分析。使用大涡模拟模型,并使用Fowcs Williams和Hawkings方法进行声学模拟。功率谱密度是通过快速傅立叶变换获得的。发现频率峰值在148 Hz至155 Hz之间。这些结果与通过亥姆霍兹模型获得的结果以及公开文献中报道的其他结果一致。结果表明,在共振条件下,峰值压力最多可以增加六倍,相当于功率提升率为28%。

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