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Frequency domain prediction of peak nonlinear wave heights of structure-TLD systems

机译:结构-TLD系统的峰值非线性波高的频域预测

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Prediction of peak wave heights early in the TLD design process is critical to ensure proper tank freeboard is allocated. If insufficient freeboard is allocated, the performance of the TLD may be adversely affected by the waves impacting with the tank ceiling. A frequency domain model is developed to predict the spectral response of the first two TLD sloshing modes. A probability density function of the wave height envelop for the first two sloshing modes is derived and employed to predict the peak wave height expected during a specified duration of time.Scale-model structure-TLD tests and nonlinear simulations are employed to evaluate the proposed frequency domain model. The model predicts the RMS response of the second order sloshing mode within a relative error of 15% when compared to simulations. The error increases when the water depth ratio is small. The predicted peak structural responses are in excellent agreement with those that are simulated or measured. The predicted peak TLD wave heights show a maximum error of 20% for all the cases considered. The peak factor relating the peak wave height to the RMS response of the fundamental sloshing mode increases with a decreasing liquid depth and increasing RMS response amplitude. The proposed model enables a rapid estimation of the peak wave response without resorting to computationally expensive nonlinear time domain simulations.
机译:在TLD设计过程中尽早预测峰值波高对于确保分配适当的油箱干舷至关重要。如果分配的干舷不足,则TLD的性能可能会受到波及罐顶的影响。开发了频域模型来预测前两个TLD晃荡模式的频谱响应。推导了前两种晃动模式的波高包络线的概率密度函数,并用于预测在指定的持续时间内预期的峰值波高。采用比例模型结构-TLD测试和非线性模拟来评估所提出的频率域模型。与模拟相比,该模型可预测二阶晃荡模式的RMS响应,相对误差为15%。当水深比小时,误差增加。预测的峰结构响应与模拟或测量的峰响应非常一致。在所有考虑的情况下,预计的TLD峰值波高均显示20%的最大误差。将峰值波高与基本晃动模式的RMS响应相关联的峰值因数随着液深的减小和RMS响应幅度的增加而增加。所提出的模型能够快速估计峰值波响应,而无需借助计算上昂贵的非线性时域仿真。

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