浮桥整体响应对不同波浪漂力模型的敏感性

Carlos Eduardo Silva de Souza, N. Fonseca, M. Kvittem
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引用次数: 0

摘要

在穿越挪威峡湾时,浮桥是替代渡轮的一个很有前途的解决方案。它们的设计涉及采用准确的,但同时有效的模型,结构所承受的载荷。浮桥上的波浪漂移力可能会激发桥梁的下水平模态,从而对桥梁和系泊线的载荷产生影响。在这种应用中,通常采用纽曼近似来计算波浪漂移力。在计算波浪漂移系数时,一种常见的简化方法是假设浮桥是固定的,而众所周知,波浪频率运动可能会显著影响漂移荷载。本文评价了这种简化的结果,并与考虑浮桥运动的系数进行了比较。首先,评估了由于平均漂移引起的桥梁挠度对浮桥运动的影响。研究发现,这种影响可以忽略不计。然后,将RAOs用于波浪漂移系数的计算,结果与固定浮桥的计算结果有很大的不同。然后用两种方法计算的波浪漂移系数进行时域模拟,重点是梁力矩和系泊线张力。结果表明,根据海况和波浪入射方向的不同,采用固定浮桥的漂变系数是一种非保守化的简化方法。
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Sensitivity of a Floating Bridge Global Responses to Different Wave Drift Force Models
Floating bridges are a promising solution for replacing ferries in the crossing of Norwegian fjords. Their design involves the adoption of accurate, but at the same time efficient models for the loads the structure is subjected to. Wave drift forces at the bridge’s pontoon may excite the bridge’s lower horizontal modes, with consequences to the loads on the bridge and mooring lines. Newman’s approximation is normally adopted to calculate the wave drift forces in such applications. A common simplification is to assume that the pontoons are fixed in the calculation of wave drift coefficients, while it is known that wave frequency motions may significantly influence drift loads. This paper evaluates the consequences of this simplification, in comparison to coefficients obtained considering the pontoons’ motions. First, the effect of the bridge deflection, due to mean drift, on the pontoon’s motions, is evaluated. It is found that this effect is negligible. Then, the RAOs are used in the calculation of wave drift coefficients, showing very different results than those obtained with fixed pontoons. Time-domain simulations are then performed with wave drift coefficients calculated with both approaches, with focus on the bridge girder moments and mooring line tensions. It is shown that using wave drift coefficients obtained with fixed pontoon is a non-conservative simplification, depending on sea state and wave incidence direction.
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