首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >HYDRODYNAMIC ANALYSIS OF MULTIPLE FLOATING PONTOONS WITH DIFFERENT JOINT GAPS TO WAVES IN DIFFERENT WATER DEPTH
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HYDRODYNAMIC ANALYSIS OF MULTIPLE FLOATING PONTOONS WITH DIFFERENT JOINT GAPS TO WAVES IN DIFFERENT WATER DEPTH

机译:不同关节间隙的多浮隙的流体动力学分析在不同水深的波浪中的波浪

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The hydrodynamic analysis of a multiple pontoon-type floating bridge (FB) interacting with oblique waves in water of finite arbitrary depth can be performed, at least in principle, using a general-purpose radiation-diffraction code. The fluid is assumed to be inviscid, and the flow can be considered as incompressible and irrotational, and the velocity potentials are calculated by boundary element method. To study the influences of the water depth and the gap between bodies on the hydrodynamic properties of the pontoons, RAOs (Response Amplitude Operators) of modes of each pontoon versus the wave frequencies are calculated and presented. The results show that the RAOs of pitch modes of different pontoons have differences in high frequency in heading waves, and those RAOs differences of heave of different pontoons in heading and oblique waves are small. Furthermore, all the others results nearly match into one. The influences of width of the gap between pontoons to RAOs are small, but the water depth has obvious influence on RAOs. In addition, the motions of FB are simulated and compared in different sea conditions which are represented by the JONSWAP spectrum. The results show that not only the peak wave periods but also the significant wave heights have obvious influences on the motions of the FB.
机译:可以使用通用辐射 - 衍射码来执行与有限的任意深度水中的倾斜波中的多浮筒型浮桥(FB)的流体动力学分析。假设流体被认为是不可挤压的,并且可以被认为是不可压缩和无视的,并且通过边界元方法计算速度电位。为了研究水深和体内体之间的间隙对浮翼的流体动力学性质的影响,计算并呈现了每个浮桥的模式的RaOS(响应幅度算子)。结果表明,不同浮桥的音调模式的RAO在波浪中具有高频率的差异,以及标题和倾斜波中不同浮桥的升降差异很小。此外,所有其他结果几乎匹配为一个。 Pontoons与Raos之间间隙宽度的影响很小,但水深对RAOS的影响显而易见。此外,模拟FB的运动并在不同的海洋条件下进行比较,这些情况由Jonswap谱表示。结果表明,不仅峰值波段而且显着的波浪高度对FB的运动有明显影响。

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