An Experimental Study on IMO 2nd Generation Stability Assessment in Dead Ship Condition of 13K Chemical Tanker

Sang-Beom Lee, B. Moon
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Abstract

The stability of the existing ships has been evaluated through numerical calculations in the steady-state, but recently the IMO proposed a new stability assessment criteria that the stability is evaluated in the state in which environmental loads from such as waves and wind act like the loads under actual ship operating conditions. In this study, IMO 2nd generation stability assessment method and procedure were summarized for the dead ship condition, and Direct Stability Assessment (DSA) was performed on 13K chemical tanker through basin model test. The model test is performed in the ocean engineering basin to implement wave and wind loads, and environmental conditions for waves were set height and period of the incident wave, considering the regular wave and wind generation range reproducible in the ocean engineering basin. In addition, to consider the effect of wind speed, the Beaufort Scale for wind speed was applied in the model test. 제어 불능상태),
13K化学品船死船条件下IMO第二代稳定性评估实验研究
现有船舶的稳定性评价大多是通过稳态数值计算来实现的,但最近国际海事组织提出了新的稳定性评价标准,即将波浪、风等环境荷载作用于船舶实际工况下的稳定性评价。本研究总结了IMO第二代死船稳定性评估方法和程序,并通过水盆模型试验对13K油轮进行了直接稳定性评估(DSA)。模型试验在海洋工程盆地中实施波浪和风荷载,考虑到海洋工程盆地中可重现的规则波浪和风力产生范围,设置波浪的环境条件,设置入射波的高度和周期。此外,为了考虑风速的影响,在模型试验中采用了风速的波弗特尺度。【中文】:
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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