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ANALYSIS OF FREE VIBRATION CHARACTERISTICS AND MODE SHAPES OF A SEMI-SUBMERSIBLE PLATFORM

机译:半潜式平台的自由振动特性和模式形状分析

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The current investigation presents a global natural frequency and mode shape analysis of a semi-submersible platform. The purpose is to evaluate the separation in frequency between the semi-submersible's global natural frequencies and the exciting wave spectrum. Two types of finite element models are compared: a beam element model and a shell element model. The main differences in the models are the level of resolution in details and model complexity. It is shown that both beam and shell element models can be used for the analysis. However, the beam element model is recommended for a first approximate assessment of the fundamental natural frequency and the interval/spectrum of global resonance frequencies compared to the wave spectrum. The shell element model is recommended when a more thorough analysis is required. In addition, the natural frequencies of the semi-submersible are calculated for free vibration in air. The fundamental frequency was 1.9 Hz for the beam element model and 1.5 Hz for the shell element model. When weights corresponding to a submerged structure in operation mode are considered, including the effects of added mass, the fundamental frequency for the first mode using the beam element model was decreased to 0.7 Hz, and to 0.6 Hz when using the shell element model. When compared to the DNV world wave spectrum's highest frequency of 0.29 Hz it is concluded that the natural frequencies of the semi-submersible are at a sufficient distance from the exciting wave spectrum.
机译:目前的研究提出了一种半潜式平台的全球固有频率和模式形状分析。目的是评估半潜式潜水艇的整体固有频率与激发波谱之间的频率间隔。比较了两种类型的有限元模型:梁单元模型和壳单元模型。模型之间的主要区别在于细节的分辨率级别和模型复杂性。结果表明,梁和壳单元模型均可用于分析。但是,建议将梁单元模型用于基本自然频率以及与波谱相比的全局共振频率的间隔/频谱的第一近似评估。当需要进行更彻底的分析时,建议使用壳单元模型。另外,半潜水器的固有频率是针对空气中的自由振动而计算的。对于梁单元模型,基本频率为1.9 Hz,对于壳单元模型为1.5 Hz。当考虑与操作模式下的水下结构相对应的权重(包括附加质量的影响)时,使用梁单元模型的第一模式的基本频率降低到0.7 Hz,而使用壳单元模型的基础频率降低到0.6 Hz。当与DNV世界波谱的最高频率0.29 Hz进行比较时,可以得出结论,半潜式潜水器的固有频率与激发波谱相距足够的距离。

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