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Recent Studies of Parametrically Excited Mooring Cables for Submerged Floating Tunnels

机译:淹没浮隧道参数兴奋的系泊电缆最近的研究

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Most current designs for Submerged Floating Tunnels (SFT) include a mooring system to fix the position of these floating structures. Long period waves, such as swell waves, parametrically excite the system and might result in excessive vibrations in the cable. This paper presents two distinct studies. First, an analytical investigation of the system's stability is performed to derive a closed-form expression, which allows for a quick evaluation of the system's stability. This expression is obtained through the Harmonic Balance Method (HBM) with two harmonic terms. The contribution of multiple modes of vibration is investigated for the case of small sag to span ratios. The expression is compared with the results from a numerical model, revealing the applicability of the proposed formulation. The second study investigates the tension in the mooring line during parametric excitation. Correct design should avoid excessive forces that might break the line or very small forces that lead to momentarily slack cables. Thus, the aim of this study is to assess the validity of using the stability charts for the design of mooring lines with respect to safe levels of cable forces. This is achieved through the numerical analysis of a cable model using Abaqus. Cable vibrations and cable forces are compared for a range of amplitude's and frequencies of the support motions.
机译:浸没式浮动隧道(SFT)的大多数电流设计包括系泊系统,以固定这些浮动结构的位置。长期波浪,例如膨胀波,参数激发系统,可能导致电缆中的过度振动。本文提出了两个不同的研究。首先,进行系统稳定性的分析研究以导出闭合形式表达,这允许快速评估系统的稳定性。通过具有两个谐波术语的谐波平衡方法(HBM)获得该表达。研究了多种振动模式的贡献,以便小幅下垂到跨度比率。将表达与来自数值模型的结果进行比较,揭示了所提出的制剂的适用性。第二研究研究了参数激发期间系泊线中的张力。正确的设计应避免可能破坏线条或非常小的力量的过度力,导致瞬间松弛电缆。因此,本研究的目的是评估利用稳定性图表的稳定性图表的稳定性图表相对于安全水平的电缆力。这是通过使用ABAQUS的电缆型号的数值分析来实现的。将电缆振动和电缆力进行比较,以一系列幅度和支撑运动的频率。

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