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Investigation of the effect of the bed slope on extreme waves using First Order Reliability Method

机译:用一阶可靠度方法研究床坡对极端波的影响

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The effect of bed slope on the force statistics and shape of the force time history around the force peak is investigated numerically with a fully nonlinear wave model and FORM analysis. The numerical model setup is validated by comparison of averaged experimental force and free surface elevation time series and the FORM results for the given force levels. The fully nonlinear FORM solution shows a good improvement over first-order and second-order results by increasing the asymmetry of the force history through the peak. The average deviation between FORM and the experimental curve is found to be at the level of 10% of the maximum force value. Next, the order statistics for force peaks from experimental and numerical 3 h realization are compared. Bootstrapping is applied to estimate the expected mean value of the inline forces for a given exceedance probability and a good match between the numerical and experimental order statistics is found.FORM predictions of the force peak histories for a cylinder on flat or sloping bed are next compared. The diameter, depth at the structure and significant wave height are kept identical between the two cases. It is found that the force histories are not changed significantly by the presence of the slope in the sea states with lower Ursell number. For the larger Ursell number sea states, the corresponding time histories of the free surface elevation, however, show a larger skewness for the flat bed case. Further, from the FORM analysis, the exceedance probabilities for a given force level at sloped bed is found to be larger than for flat bed. The ratio of exceedance probability is found to increase with force level except for the sea states with largest Ursell number where the numerical results are affected by strong nonlinearity.The higher-harmonic content of the force histories is further analyzed by the four-phase separation method. The analysis confirms that the relative contribution from the higher-harmonic force components increases with the force peak level and further shows that the contribution from the first, second and third harmonics are very similar between flat bed and sloped bed. The analysis further highlights the presence of spurious second-harmonic waves from the linear wave generation method and shows that these are stronger for the flat bed case. The phase shift between the different harmonics of free surface elevation and inline force time series is observed to be constant for different sea states and target forces irrespective of the bed slope.Besides the direct findings of the study, the paper demonstrates the applicability of the FORM method for determination of design waves based on certain load effects. Although difficulties may occur for breaking waves or very strong nonlinearity, the combination of FORM and a fully nonlinear wave model enables average probability levels and time histories for extreme events to be determined and applied as design waves specific to a given load level or response level.
机译:利用完全非线性的波动模型和FORM分析,数值研究了床面坡度对力统计和力峰值附近时间历史形状的影响。通过比较平均实验力和自由表面高程时间序列以及给定力水平下的FORM结果,可以验证数值模型的设置。完全非线性的FORM解决方案通过增加通过峰值的力历程的不对称性,显示出对一阶和二阶结果的良好改进。发现FORM和实验曲线之间的平均偏差为最大力值的10%。接下来,比较了实验和数值3 h实现中力峰值的顺序统计。应用自举法来估计给定超出概率下的内联力的预期平均值,并找到数值和实验顺序统计之间的良好匹配。接下来比较平底或倾斜床上圆柱的力峰值历史的形式预测。在两种情况下,直径,结构深度和有效波高保持相同。发现在Ursell数较低的海州,斜率的存在不会显着改变力的历史。对于较大的Ursell数海州,自由表面标高的相应时间历程对于平板床情况显示出较大的偏斜度。此外,从FORM分析中,发现倾斜床给定受力水平的超出概率大于平坦床。发现超概率的比率随受力水平的增加而增加,除了数值较大的海塞尔州(Ursell数最大的海州)数值结果受强非线性影响外。通过四相分离法进一步分析了受力历史中的高次谐波含量。分析证实,高次谐波力分量的相对贡献随力峰值水平的增加而增加,并进一步表明,在平板床和倾斜床中,一次,二次和三次谐波的贡献非常相似。分析进一步强调了线性波生成方法中存在伪二次谐波,并表明对于平板床情况,这些杂波更强。对于不同的海况和目标力,无论床身的坡度如何,自由表面高度和谐波力时间序列的不同谐波之间的相移都是恒定的。除了研究的直接发现,本文还证明了FORM的适用性。确定某些载荷效应的设计波浪的方法。尽管可能会遇到难以打破波浪或非常强的非线性的困难,但是FORM和完全非线性的波浪模型的结合可以确定极端事件的平均概率水平和时间历史,并将其用作特定于给定负载水平或响应水平的设计波浪。

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