首页> 外文期刊>Nae more, journal of marine sciences >On the Development of Catamaran Hull Form for Fish Processing Vessel to Support Domestic Fishing Activities in Indonesia
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On the Development of Catamaran Hull Form for Fish Processing Vessel to Support Domestic Fishing Activities in Indonesia

机译:关于鱼类加工船只的双体船壳体的发展,以支持印度尼西亚国内捕捞活动

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Several advantages of multihull, such as catamaran, have been extensively discussed in the previous research. Therefore, this research focuses on developing a catamaran hull form for the fish processing vessel hull. The initial stage is determining the principal dimension and exploring the configurations of catamaran hull forms. The existing high-speed craft catamarans have been adopted to determine the parent model main dimensions using a linear regression equation model. Otherwise, the catamarans single demi-hull geometry was developed by converting and modifying the parent model hull form with enlarging the hull displacement to achieve the deadweight capacity and service speed requirements. The demi-hull spacing configuration with s/L 0.17, s/L 0.20, s/L 0.30, and s/L 0.40 on the resistance characteristics, intact stability, and sea-keeping behaviour were also explored. Furthermore, the comparisons with the previously proposed monohull were presented. Regarding the hull resistance performance, the analysis indicated that the catamaran hull form had better total resistance characteristics than the monohull on the service speed over 23 knots. In the case of intact stability, the analysis results presented that the catamaran hull form has better intact stability characteristics than the monohull. The dynamic stability of the catamarans also gave better dynamic stability at the heeling angle below 41.57°. Otherwise, the catamarans with s/L 0.17 and s/L 0.20 have lower dynamic stability than the monohull at the heeling angle larger than 41.57° and 58.03°, respectively. In the sea-keeping performance, the catamaran hull has shown an excellent rolling motion required for the offshore environment loading/unloading process. The large demi hull spacing of the catamarans hull can reduce the effect of the wave creating load on the roll motion response at the Beam Sea.
机译:在以前的研究中,多壳的几个优点是多壳,如双帆船。因此,这项研究侧重于开发鱼类加工船船体的双体船体形式。初始阶段正在确定主要维度并探索双体船船体形式的配置。已经采用现有的高速工艺双体索纳使用线性回归方程模型来确定父模型主要尺寸。否则,通过转换和修改父模型船体形式,通过扩大船体位移来实现双体单Demi-Hull几何形状,以实现重量级容量和服务速度要求。还探讨了S / L 0.17,S / L 0.20,S / L 0.30和S / L 0.40的Demi-Hull间距配置,探讨了电阻特性,完整稳定性和海上保持行为。此外,提出了与先前提出的单孔的比较。关于船体阻力性能,分析表明,双体船体形式的总电阻特性比Monohull在服务速度超过23结上。在完整稳定性的情况下,分析结果呈现了双体船体形式具有比Monohull更好的完整稳定性特性。双摩拉人的动态稳定性也在低于41.57°的后腹角度下具有更好的动态稳定性。否则,具有S / L 0.17和S / L 0.20的双体载物的动态稳定性较低,分别位于大于41.57°和58.03°的后孔角度。在海上的性能下,双体船船体显示了海上环境载入/卸载过程所需的出色轧制运动。双体船船体的大展示船体间距可以降低波浪产生负荷对光束海的辊运动响应的影响。

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