Investigation of Seakeeping Performance of Trawler by the Influence of the Principal Particulars of Ships in the Bering Sea

Thi Thanh Diep Nguyen, Hoang Thien Vu, Aeri Cho, Hyeong-Kyu Yoon
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Abstract

: Investigating ship motion under real conditions is vital for evaluating the seakeeping performance, particularly in the design process stage. This study examined the influence of the principal particulars of a trawler on its seakeeping performance. The wave conditions in the Bering Sea are investigated using available data. The length-to-beam (L/B) and beam-to-draft (B/T) ratios of the ship are changed by 10% for the numerical simulation. The response amplitude operator (RAO) motion, root mean square (RMS) value and sensitivity analysis are calculated to evaluate the influence of the trawler dimensions on ship motions. The peak RAO motion affected the ship motions noticeably because of the resonance at the natural frequency. The L/B and B/T ratios are important geometric parameters of a ship that significantly influence its RMS motion, particularly in the case of roll and pitch. The change in the B/T ratio has a good seakeeping performance based on a comparison of the roll and pitch with the seakeeping criteria. The present results provide insights into the seakeeping performance of ships due to the influence of the principal dimensions in the design stage.
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通过白令海中船舶主要参数的影响调查拖网渔船的适航性能
:调查真实条件下的船舶运动对于评估船舶的适航性能至关重要,尤其是在设计阶段。本研究探讨了拖网渔船的主要特性对其航海性能的影响。利用现有数据对白令海的波浪条件进行了研究。在数值模拟中,船舶的长宽比(L/B)和宽窄比(B/T)均改变 10%。计算了响应振幅算子 (RAO) 运动、均方根值和敏感性分析,以评估拖网渔船尺寸对船舶运动的影响。由于固有频率处的共振,RAO 运动峰值对船舶运动的影响非常明显。L/B 和 B/T 比率是船舶的重要几何参数,对其有效运动有显著影响,尤其是在滚动和俯仰情况下。根据滚动和俯仰与适航标准的比较,B/T 比的变化具有良好的适航性能。本研究结果提供了在设计阶段主要尺寸对船舶航海性能影响的见解。
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