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Long-term correlation structure of wave loads using simulation

机译:波浪载荷的长期相关结构模拟

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This paper proposes a new method for combining the lifetime wave-induced sectional forces and moments that are acting on the ship structure. The method is based on load simulation and can be used to determine the exceedance probabilities of any linear and nonlinear long-term load combination. It can also be used to determine the long-term correlation structure between these loads in the form of the long-term correlation coefficients. They are essential part of the load combination procedures in design and strength evaluations as well as in the fatigue and reliability analysis of ship structures. « The simulation method treats the non-stationary wave elevations during the ship's entire life (long-term) as a sequence of different stationary Gaussian stochastic processes. It uses the rejection sampling technique for the sea state generation, depending on the ship's current position and the season. Ship's operational profile is then determined conditional on the current sea state and the ship's position along its route. The sampling technique significantly reduces the number of sea state-operational profile combinations required for achieving the convergence of the long-term statistical properties of the loads. This technique can even be used in combination with the existing long-term methods in order to reduce the number of required weightings of the short-term CDFs. The simulation method does, however, rely on the assumption that the ship is a linear system, but no assumptions are needed regarding the short-term CDF of the load peaks. The load time series are simulated from the load spectra in each sea state, taking into account the effects of loading condition, heading, speed, seasonality, voluntary as well as involuntary speed reduction in severe sea states and the short-crested nature of the ocean waves. During the simulation procedure, special care has been given to maintaining the correct phase relation between all the loads. Therefore, time series of various load combinations, including the nonlinear ones, can be obtained and their correlation structure examined. The simulation time can be significantly reduced (to the order of minutes rather than hours and days) by introducing the seasonal variations of the ocean waves into a single voyage simulation. The estimate of the long-term correlation coefficient, obtained by simulating only a single voyage with the correct representation of seasonality, approaches the true correlation coefficient in probability. This method can be applied to any ship and any route, or multiple routes as long as the percentage of the ship's total lifetime spent in each of them is known. A study has been conducted to investigate the effects of ship type, route and the longitudinal position of the loads on the values of the correlation coefficients between six different sectional loads; vertical, horizontal and twisting moments, as well as shear, horizontal and axial forces. Three ocean-going ship types have been considered; bulk carrier, containership and tanker, all navigating on one of the three busy ship routes: North America-Europe, Asia-North America and Asia-Europe. Finally, the correlation coefficient estimates have been calculated for five different positions along the ship's length to investigate the longitudinal variation of the correlation coefficient.
机译:本文提出了一种新的方法,将寿命波引起的截面力和作用在船舶结构上的力矩结合起来。该方法基于负载模拟,可用于确定任何线性和非线性长期负载组合的超出概率。它还可以以长期相关系数的形式用于确定这些负载之间的长期相关结构。它们是载荷组合程序在设计和强度评估以及船舶结构的疲劳和可靠性分析中必不可少的部分。 «模拟方法将船舶整个生命周期(长期)中的非平稳波高程视为一系列不同的固定高斯随机过程。它使用拒绝采样技术生成海况,具体取决于船舶的当前位置和季节。然后根据当前的海况和船舶沿其路线的位置确定船舶的运行状况。采样技术显着减少了实现负载的长期统计特性收敛所需的海况-运行剖面组合的数量。该技术甚至可以与现有的长期方法结合使用,以减少短期CDF所需权重的数量。但是,该模拟方法确实基于船舶是线性系统的假设,但无需对负荷峰值的短期CDF做出任何假设。根据每种海况下的载荷谱模拟载荷时间序列,并考虑到载荷条件,航向,速度,季节性,严重海况下的自愿性和非自愿性减速以及海洋的短顶性的影响波浪。在仿真过程中,要特别注意保持所有负载之间的正确相位关系。因此,可以获得包括非线性的各种载荷组合的时间序列,并检查它们的相关结构。通过将海浪的季节性变化引入单个航海模拟中,可以大大减少模拟时间(减少数分钟,而不是数小时和数天)。通过仅以正确的季节表示方式模拟单个航程而获得的长期相关系数的估计接近概率的真实相关系数。此方法可以应用于任何船舶和任何路线,或多条路线,只要知道在其中每条路线上花费的船舶总寿命的百分比即可。已经进行了研究以研究船型,航线和载荷的纵向位置对六个不同截面载荷之间的相关系数值的影响;垂直,水平和扭转力矩,以及剪切,水平和轴向力。已经考虑了三种远洋船类型;散货船,集装箱船和油轮,都在以下三种繁忙的航线上航行:北美-欧洲,亚洲-北美和亚洲-欧洲。最后,已计算出沿船长的五个不同位置的相关系数估计值,以研究相关系数的纵向变化。

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