随机波中紧密间隔圆柱阵列在线相互作用的统计分析

Jiangnan Lu, J. Niedzwecki
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引用次数: 1

摘要

紧密间距圆柱阵列广泛应用于海上平台的设计。当受到随机波和电流的影响时,它们的相互作用反应行为非常复杂,可能超出了直接解析公式的能力来模拟它们的运动。本文利用极值统计方法对模型盆地数据进行了分析,研究了直列配对和三重深水缸阵列的响应行为。模型盆实验中使用的圆柱体模型采用ABS外塑料外壳,外塑料外壳包裹可预紧的内钢丝芯。圆筒模型外壳与钢丝的直径比为4.25,长细比约为1300。圆柱体阵列在顶部进行预紧,并在不同的节径比3.0,4.4和8.75下进行测试。随机海况用JONSWAP谱模拟。采用广义极值(GEV)分布对响应时间序列进行了研究,该分布拟合到代表相邻肌腱之间最大直线相对位移的块最大值。通过Anderson-Darling (AD)检验标准比较拟合优度来选择最合适的模型,并特别注意它们在拟合分布上尾方面的表现。然后利用所选模型预测圆柱阵列相对响应行为的阈值跨越概率。提出并讨论了调查结果的表格和图形解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Statistical Analysis of In-Line Interaction of Closely Spaced Cylinder Arrays in Random Waves
Closely spaced cylinder arrays are widely used in offshore platform designs. When subject to random waves and currents, their interactive response behavior is very complicated and perhaps beyond the ability of direct analytical formulations to model their motions. In this study extremal statistics methods were utilized to analyze model basin data that investigated the response behavior of in-line paired and triple deep-water cylinder arrays. The cylinder models used in the model basin experiments were constructed with an ABS outer plastic shell that surrounded an inner steel wire core that could be pretensioned. The cylinder model diameter ratio of the outer shell to steel wire was 4.25 with a slenderness ratio of approximately 1300. The cylinder arrays were pretensioned on the top side and were tested varying pitch to diameter ratios of 3.0, 4.4, and 8.75. The random sea states were simulated using a JONSWAP spectrum. The response time series were investigated using generalized extreme value (GEV) distributions that were fitted to the block maxima that represented the maximum in-line relative displacement between two adjacent tendons. The most appropriate models were selected by comparing their goodness of fit via the Anderson-Darling (AD) test criterion with special attentions paid to their performance in fitting the upper tail of the distribution. The selected models were then used to predict threshold-crossing probabilities of the cylinder array relative response behavior. Both tabular and graphical interpretations of the findings are presented and discussed.
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