Model Experiments of Floating Side-by-Side Barges

Kie Hian Chua, P. Mello, K. Nishimoto, Y. Choo
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引用次数: 4

Abstract

The interaction between two floating vessels has been a subject of much study in recent years due to its relevance to floating liquefied natural gas (FLNG) developments. The safety and operability of these facilities are directly influenced by the wave elevation in the gap between the two vessels as well as the relative motions between the vessels. In the industry, it is common practice to use potential flow models to calculate free-surface responses under various wave conditions. Given that these numerical models are inviscid, calibration of additional damping terms are usually carried out using model tests to in order to account for the viscous dissipation on the gap hydrodynamics. However, it is known that the dissipative effects of viscosity may be nonlinear and thus, model test data obtained using one set of wave conditions may not be suitable for use in another scenario. In this paper, model experiments of two identical side-by-side barges of 280m (length) × 46m (breadth) × 16.5m (draught) under various wave excitation are described. The experiments considered a range of parameters such as gap width, wave heights, periods and wave directions. The results obtained for each set of these parameters are discussed and compared between the two types of incident waves (regular and irregular).
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并排浮动驳船模型试验
近年来,由于浮式液化天然气(FLNG)的发展与两艘浮式船舶之间的相互作用有关,因此一直是许多研究的主题。这些设施的安全性和可操作性直接受到两艘船之间的浪高和两艘船之间的相对运动的影响。在工业中,通常的做法是使用势流模型来计算各种波浪条件下的自由面响应。由于这些数值模型是无粘性的,为了考虑间隙流体力学的粘性耗散,通常使用模型试验来校准附加阻尼项。然而,众所周知,粘度的耗散效应可能是非线性的,因此,在一组波动条件下获得的模型试验数据可能不适合在另一种情况下使用。本文介绍了两艘长度为280m ×宽度为46m ×吃水为16.5m的同一并排驳船在不同波浪激励下的模型试验。实验考虑了一系列参数,如间隙宽度、波高、周期和波方向。讨论并比较了两种入射波(规则波和不规则波)对这些参数所得到的结果。
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