首页> 外文期刊>Energy Reports >The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), 20–23 September 2019, Okinawa, Japan The influences of diversity hull shapes and outriggers arrangement in pentamaran systems
【24h】

The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), 20–23 September 2019, Okinawa, Japan The influences of diversity hull shapes and outriggers arrangement in pentamaran systems

机译:第6届国际权力和能源系统会议(CPESE 2019),2019年9月20日至23日,日本冲绳,日本在五兰制度中的多样性船体形状和舷外传道的影响

获取原文
           

摘要

The wave flow pattern builds up along the hull and expansion flow behind the hull is absorbing the energy from the ship as a resistance. The ship’s resistance and the behaviour of its components are significant in estimating the propulsion of the ship, which positively influences fuel consumption. The aimed of this work was investigating the influence of two hull forms and its outriggers arrangement in pentamaran systems. The investigating was in wave resistance, interference, and far-field wave spectrum. This study focused on warp-chine and Wigley hull shapes by comparing a computation which was based on Michell’s thin ship theory and various tests in clearance and stagger of side hulls. The results of this study founded the resistance coefficients based on Michell’s approach agreed with towing test results at Fn 0.5. Besides, wave resistance for warp-chine configurations was established to be much better than Wigley except at Fn 0.5. High coefficient reduction for warp-chine hulls was generated with a setting where the main hull to side hull on a formation as an arrow trimaran near to Kelvin angle. As for Wigley, the high reduction was produced by a configuration where the front-side hull and the stern-side hull were in line. Then, captured wave patterns of the towing test exhibited a fit visual with the computation, in which Wigley hulls produced a more significant wave than warp-chine hulls.
机译:波动模式沿着船体和船体后面的膨胀流构成,将能量从船上吸收作为阻力。船舶的抵抗力和其组件的行为在估计船舶的推进方面是显着的,这会对燃料消耗产生积极影响。这项工作的目标是调查五个船体形式的影响及其在五兰制理系统中的影响。调查是波动,干扰和远场波谱。本研究专注于经线 - Chine和Wigley Hull形状,通过比较基于Michell薄船理论的计算和在侧壳的间隙和交错的各种测试中。本研究的结果创立了基于Michell的方法的电阻系数,同意牵引试验结果在Fn> 0.5时。此外,建立了Wigley的Wigley的波形电阻,除了FN <0.5。经过大经线船体的高系数减少,其中主要壳体在形成靠近Kelvin角度的箭头覆盖的位置。至于Wigley,通过前侧船体和船尾船体排列的配置产生高减少。然后,牵引试验的捕获波形图案表现出适合视觉的计算,其中Wigley Hulls产生的波浪比Wigp-Chine Hulls更大。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号