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Study of a deep draft vessel to enhance onsite installation capability of a jack up type unit operating in the wind farm zone offshore of the Taichung Harbor Taiwan

机译:台湾港台湾风电场区升降机型升降机岩石型装置的深层船舶

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摘要

In the paper, a concept of placing a deep draft vessel upstream a jack up type unit is proposed to enhance onsite installation capability of the jack up type unit operating in the wind farm zone offshore of the Taichung Harbor Taiwan, where water depth is less 50m and bottom fixed structures are used. The deep draft vessel intends to induce wave shielding effect to reduce the motions of the downstream jack up type unit during the initial phase of its onsite installation, while its legs/spudcans are not yet touching the seabed and it is still in free floating condition. In general, the more the motion of the jack up type unit is reduced during the initial phase of its onsite installation, the more its onsite installation capability is enhanced. ANSYS AQWA is utilized to analyze the motions of the two floating bodies, the deep draft vessel and the jack up type unit, as well as the wave shielding effect for various wave periods and incident angles. In the analysis, fluid is assumed ideal, and no viscous effect is considered in the calculation of all the motions of the two floating bodies. Pitch and heave motion RAOs (Response Amplitude Operator) of the jack up unit with or without the deep draft vessel placing upstream are compared to examine the wave shielding effect. In the study, a parametric study for a range variation of the principal dimensions of the two floating bodies is performed to determine suitable principal dimensions for the deep draft vessel and the feasibility of the proposed concept. In addition, pitch and heave motion RAOs of the deep draft vessel at wave incident angles of 0 degrees similar to 30 degrees are also analyzed to evaluate its seakeeping performance. From the results of the study, it is found that the vessel with deeper draft (= 12.5 m) is more effective to induce wave shielding effect in waves with period of 5-7 s. The deeper the draft of the vessel, the greater the wave shielding effect, and the more motion reduction to the downstream jack up type unit in waves with period of 5-7 s. It is also found that, in waves with period of 5-7 s and at incident angles of 0 degrees similar to 30 degrees , the vessel with deeper draft has better seakeeping performance. Since the most common waves in the wind farm zone offshore of the Taichung Harbor Taiwan are of 6-7 s in period, the feasibility of the concept of placing a deep draft vessel upstream a jack up type unit to reduce the motion and enhance the onsite installation capability of the jack up type unit operating in that area is demonstrated.
机译:在本文中,提出了一个拆除升降机型单元上游的深层船舶的概念,以提高在台中港台湾风电场区运行的升降机型装置的现场安装能力,水深减少50米使用底部固定结构。深层血管旨在诱导波浪屏蔽效果,以减少在现场安装的初始阶段期间下游插孔型单元的动作,而其腿/施晶虫尚未触及海底,并且它仍处于自由浮动状态。通常,在现场安装的初始阶段减少了升降型单元的运动越多,其现场安装能力越多。 ANSYS AQWA用于分析两个浮体,深叶笛和升降型单元的运动,以及各种波段和入射角的波屏蔽效果。在分析中,假设流体理想,并且在两个浮体的所有运动的计算中没有考虑粘性效果。将升降机和升降运动RaOS(响应幅度算子)与放置上游放置上游的深色船只的插孔单元的俯仰和升放幅度算子)进行比较,以检查波屏蔽效果。在该研究中,执行用于两个浮体的主要尺寸的范围变化的参数研究,以确定深料叶片的合适主尺寸以及所提出的概念的可行性。此外,还分析了类似于30度的0度的波入射角的深层牵引船的俯仰和升降运动RaO,以评估其海守性能。从研究结果来看,发现具有更深的草稿(> = 12.5米)的容器更有效地诱导波浪在波浪中的波浪屏蔽效果为5-7秒。船舶的草稿越深,波浪屏蔽效果越大,波浪中的下游插座型单位的运动越大,为5-7秒。还发现,在具有5-7秒的波浪和0度的入射角,类似于30度的,具有更深的草稿具有更好的海守性能。由于台中港口海上风电场区最常见的波浪在时期为6-7秒,因此将深层船的概念放在上游的升降机上游的概念,以减少运动并增强现场展示了在该区域中操作的插孔型单元的安装能力。

著录项

  • 来源
    《Ocean Engineering》 |2020年第2期|107998.1-107998.15|共15页
  • 作者单位

    Natl Taiwan Ocean Univ Dept Syst Engn & Naval Architecture Keelung Taiwan|Natl Taiwan Ocean Univ Ctr Excellence Ocean Engn Keelung Taiwan;

    Natl Taiwan Ocean Univ Dept Syst Engn & Naval Architecture Keelung Taiwan|Natl Taiwan Ocean Univ Ctr Excellence Ocean Engn Keelung Taiwan;

    Natl Taiwan Ocean Univ Dept Syst Engn & Naval Architecture Keelung Taiwan;

    Natl Taiwan Ocean Univ Dept Harbor & River Engn Keelung Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Jack up type unit onsite installation; Deep draft vessel; Wave shielding;

    机译:插孔类型单位现场安装;深绘图船;波浪屏蔽;

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