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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Effect of higher modes and multi-directional seismic excitations on power plant liquid storage pools
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Effect of higher modes and multi-directional seismic excitations on power plant liquid storage pools

机译:高模和多向地震激励对发电厂液体存储池的影响

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The slosh height and the possibility of water spill from rectangular Spent Fuel Storage Bays (SFSB) and Tray Loading Bays (TLB) of Nuclear power plant (NPP) are studied during 0.2 g, Safe Shutdown Earthquake (SSE) level of earthquake. The slosh height obtained through Computational Fluid dynamics (CFD) is compared the values given by TID-7024 (Housner 1963) and American concrete institute (ACI) seismic codes. An equivalent amplitude method is used to compute the slosh height through CFD. Numerically computed slosh height for first mode of vibration is found to be in agreement the codal values. The combined effect in longitudinal and lateral directions are studied separately, and found that the slosh height is increased by 24.3% and 38.9% along length and width directions respectively. There is no liquid spillage under SSE level of earthquake data in SFSB and TLB at convective level and at free surface acceleration data. Since seismic design codes do not have guidelines for combined excitations and effect of higher modes for irregular geometries, this CFD procedure can be opted for any geometries to study effect of higher modes and combined three directional excitations.
机译:研究了在0.2 g安全关闭地震(SSE)地震水平下,核电站(NPP)的矩形乏燃料存储区(SFSB)和托盘装载区(TLB)的晃动高度和漏水的可能性。将通过计算流体动力学(CFD)获得的晃荡高度与TID-7024(Housner 1963)和美国混凝土协会(ACI)地震法规给出的值进行比较。使用等效振幅方法通过CFD计算晃荡高度。发现第一振动模式的数值计算的晃动高度与尾波值一致。分别研究了纵向和横向的组合效果,发现沿高度和宽度方向的晃动高度分别增加了24.3%和38.9%。在SSEB和TLB地震数据的SSE级别下,在对流级别和自由表面加速度数据下没有液体溢出。由于抗震设计规范没有针对不规则几何形状的组合激励和较高模式的影响的指南,因此可以针对任何几何形状选择此CFD程序,以研究较高模式和组合的三个方向激励的影响。

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