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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Nonlinear Superposition Methods Applied to Continuous Ocean Wave Spectra
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Nonlinear Superposition Methods Applied to Continuous Ocean Wave Spectra

机译:非线性叠加方法在连续海浪谱中的应用

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The present paper addresses the challenges associated with applying weakly nonlinear mode-coupled solutions for wave interaction problems to irregular waves with continuous spectra. Unlike the linear solution, the nonlinear solutions will be strongly dependent on cut-off frequency for problems such as the wave elevation itself or loads on a slender cylinder used together with typical ocean wave spectra. It is found that the divergence of the solutions with respect to the cut-off frequency is related to the nonlinear interaction between waves with very different frequencies. This is, in turn, linked to a long standing discussion about the ability of mode-coupled methods to describe the modulation of a short wave due to the presence of a long wave. In cases where nonlinear properties associated with a measured or assumed history of the surface elevation is sought, it is not necessary to calculate accurately the nonlinear evolution of the wave field in space and time. For such cases it is shown that results which are independent of frequency cut-off may be obtained by introducing a maximum bandwidth in frequency between waves which are allowed to interact. It is shown that a suitable bandwidth can be found by applying this method to the problem of back-calculating a linear wave profile from a measured wave profile. In order to verify that this choice of bandwidth is suitable for second and third order terms, nonlinear loads on a slender vertical cylinder are calculated using the FNV method of Faltinsen, Newman, and Vinje (1995, "Nonlinear Wave Loads on a Slender, Vertical Cylinder," J. Fluid Mech., 289, pp. 179-198). The method is used to compare loads calculated based on measured surface elevations with measurements of loads on two cylinders with different diameters. This comparison indicates that the bandwidth formulation is suitable and that the FNV solution gives a reasonable estimate of loading on slender cylinders. There are, however, loading mechanisms that the FNV solution does not describe, notably the secondary loading cycle first observed by Grue et al. (1993, Higher Harmonic Wave Exciting Forces on a Vertical Cylinder, Institute of Mathematics, University of Oslo, Preprint No. 2). Finally, the method is employed to calculate the ringing response on a large concrete gravity base platform. The base moment response is calculated using the FNV loading on the shafts and linear loads from a standard diffraction code, together with a structural finite element beam model. Comparison with results from a recent model testing campaign shows a remarkable agreement between the present method and the measured response.
机译:本文解决了将弱非线性模式耦合解决方案与波相互作用问题应用于具有连续光谱的不规则波相关的挑战。与线性解决方案不同,非线性解决方案将严重依赖于截止频率来解决诸如波高本身或与典型海浪光谱一起使用的细长圆柱体上的负载等问题。已经发现,解关于截止频率的差异与具有非常不同频率的波之间的非线性相互作用有关。反过来,这与关于模式耦合方法描述由于长波的存在而对短波的调制的能力的长期讨论联系在一起。在寻求与测量或假定的表面高程历史相关的非线性特性的情况下,不必精确计算波场在空间和时间上的非线性演化。对于这种情况,表明可以通过在允许相互作用的波之间的频率中引入最大带宽来获得与频率截止无关的结果。结果表明,通过将这种方法应用于从测量的波轮廓反算线性波轮廓的问题,可以找到合适的带宽。为了验证带宽选择是否适合二阶和三阶项,细长的垂直圆柱上的非线性载荷是使用Faltinsen,Newman和Vinje的FNV方法计算的(1995年,“细长的垂直板上的非线性波浪载荷Cylinder,“ J.Fluid Mech。,289,第179-198页)。该方法用于将基于测得的表面高程计算出的载荷与两个直径不同的圆柱体上载荷的测量值进行比较。该比较表明,带宽公式是合适的,并且FNV解决方案给出了细长圆柱体上载荷的合理估计。但是,有一些FNV解决方案未描述的加载机制,尤其是Grue等人首先观察到的次级加载循环。 (1993年,垂直圆柱上的高次谐波激发力,奥斯陆大学数学研究所,预印本第2号)。最后,该方法用于计算大型混凝土重力基础平台上的振铃响应。基本力矩响应是使用轴上的FNV载荷和标准衍射代码的线性载荷以及结构有限元梁模型计算得出的。与最近的模型测试活动的结果进行比较表明,本方法与测得的响应之间有着显着的一致性。

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