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Numerical analysis of offshore integrated meteorological mast for wind farms during wet towing transportation

机译:湿拖运输中风电场海上综合气象桅杆数值分析

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摘要

An offshore integrated meteorological mast (OIMM) featured by integrating the offshore transportation of the foundation and steel mast into one operation is proposed. The most critical technique of the OIMM is a self-floating towing operation with a reasonable subdivision inside the floating tank. To find out the towing dynamic behaviors of the OIMM with different drafts, mooring positions, towing velocities and towrope lengths in various sea conditions, the hydrodynamic analyses were carried out by using MOSES. The OIMM model in prototype scale was established in MOSES to simulate the static stability and dynamic responses induced by coupled wave and wind conditions. A small tugboat and a single towrope are employed for this towing system. The results show that the OIMM has sufficient intact stability and acceptable damage stability for its inner subdivision configuration. The towrope length exerts the most impact on fluctuation response than draft and mooring positions. Draft depths and mooring positions impact more on pitch motion than on heave motion. The normalized maximum values of motion responses are equally influenced by draft and mooring position. Coupled effects of sea states and towing speed on dynamic features are also illustrated.
机译:提出了一种海上基础气象桅杆(OIMM),其特征在于将基础设施和钢桅杆的海上运输整合到一个操作中。 OIMM的最关键技术是在浮箱内部进行合理细分的自浮式牵引操作。为了找出在不同海况下具有不同吃水深度,系泊位置,拖曳速度和拖曳长度的OIMM的拖曳动力特性,使用MOSES进行了水动力分析。在MOSES中建立了原型规模的OIMM模型,以模拟波浪和风耦合条件引起的静态稳定性和动态响应。该拖曳系统使用一艘小型拖船和一根拖绳。结果表明,OIMM的内部细分结构具有足够的完整稳定性和可接受的损坏稳定性。与起伏和系泊位置相比,丝束长度对波动响应的影响最大。吃水深度和系泊位置对俯仰运动的影响比对升沉运动的影响更大。运动响应的归一化最大值同样受吃水和系泊位置的影响。还说明了海况和拖曳速度对动态特征的耦合影响。

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