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In this paper, added resistances acting on a hull of non ballast water ship(NBS) in high waves is discussed. The non ballast water ships were developed at the laboratory of the authors at Osaka Prefecture University, Japan. In the present paper, the performances of three kinds of bow shapes developed for the NBS were theoretically and experimentally investigated to find the best one in high waves. In previous papers, an optimum bow shape for the NBS was developed in calm water and in moderated waves. For a 2 m model for experiments and computations, the wave height is 0.02 m. This means that the wave height is 15% of the draft of the ship in full load conditions. In this paper, added resistances in high waves up to 0.07 m for a 2 m model or 53% of the full load draft are investigated. In such high waves linear wave theories which have been used in the design stage of a ship for a long time may not work well anymore, and experiments are the only effective tool to predict the added resistance in high waves. With the computations for waves, the ship is in a fully captured condition because shorter waves, λ/Lpp0.6, are assumed. 相似文献
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Seiichiro Yagi Hideki Kumamoto Osamu Muragishi Yukichi Takaoka Taichiro Shimoda 《Marine Structures》2009,22(1):12-23
SEA-Arrow (sharp entrance angle bow like an arrow) has no protrusion of the bulbous bow to reduce bow waves and has a transverse stiffening system in the narrow bow space to apply the buffer bow concept. This system has lower longitudinal stiffness than a conventional longitudinal stiffening system and therefore has buffer characteristic in ship-to-ship collision. A comparative collision study of SEA-Arrow and the conventional bulbous bow was conducted using elasto-plastic finite element analysis. A collision scenario where the striking ship hits the side shell of tanker midship perpendicularly was selected. The results showed that the buffer bow characteristic of SEA-Arrow is superior to that of the conventional bulbous bow, since much more energy is dissipated by the plastic deformation of striking and struck ships until the inner shell of struck ship ruptures. 相似文献
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一种实用船型设计方法 总被引:5,自引:2,他引:3
介绍船型设计中对兴波阻力影响最大的两个因素--横剖面面积曲线和球鼻首的设计方法.20年间,结合实用船型的特点,采用该方法研发出一种对中高速船行之有效的船型设计程序,并先后对四种具有完全不同尾型的实用船型进行优化设计,即1984年完成的球首长轴套新船型、1988年完成的球首蜗尾新船型、1992年完成的球首双尾新船型、2002年完成的球首常规尾沿海客滚船新船型,都取得了良好的消波、减阻与节能效果.在设计航速下,与各自的对比船型相比较,四种新船型均大幅度减小兴波阻力,减小剩余阻力20%以上,节省有效功率分别为16.2%、5.5%、5.8%、10.3%. 相似文献
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在船速较低的肥大型船舶上,安装球鼻艏会在很大程度上降低船舶受到的阻力,球艏对艏部型线有缓和的作用,使船舶艏部水流发生改变,减少艏底漩涡,从而降低形状阻力,进而改善船舶的水动力性能。根据设计的10万吨级半潜船船型的船模静水阻力试验情况,该船舶船首由直立型改为球鼻艏型式,通过对原型和改进后的船型的阻力试验结果进行对比,检验了新船型的减阻性能,同时对船尾伴流场进行了研究,发现船首形状改变对尾部半流场影响不大 相似文献
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船舶碰撞缓冲型球鼻艏概念探讨--球鼻曲率对碰撞的影响 总被引:1,自引:0,他引:1
船舶碰撞事故中,被撞油船船侧的破裂会引起严重的海洋污染,故油船双层船壳设计成为防止被撞油船破损的有效措施。但随着海上运输船舶的数目及尺度的日益增大,双层船壳已不能满足防止船侧破损的要求。本文提出了缓冲型球算般的构思。在船舶相撞的过程中,球鼻艏曲率的尖锐程度影响被撞船船侧的损伤程度,故提出并讨论了表征球鼻艏碰撞特性的标志性参数。通过对不同曲率的球鼻艏一系列的碴撞数值仿真计算,详细描述了外形曲率对球鼻艏的变形形态、碰撞力、碰撞力密度及能量吸收的影响,指出船舶采用钝形的球鼻艏能有效减小碰撞时的穿透损伤。 相似文献
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《船舶与海洋工程学报》2016,(1)
This paper presents the results of an experimental investigation dealing with the effect of bow overhang extensions on the quantity of shipping water over the foredeck in case of ships advancing in regular head waves. To perform this investigation, a series of free-running tests was conducted in regular waves using an experimental model of a multipurpose cargo ship to quantify the amount of shipping water. The tests were performed on five bow overhang variants with several combinations of wavelength and ship speed conditions. It was observed that the quantity of shipping water was affected by some parameters such as wavelength, ship speed, and bow shape in terms of an overhang extension. The results show the significant influence of an overhang extension, which is associated with the bow flare shape, on the occurrence of water shipping. These results involve the combined incoming regular waves and model speed. 相似文献
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This paper presents the results of an experimental investigation dealing with the effect of bow overhang extensions on the quantity of shipping water over the foredeck in case of ships advancing in regular head waves. To perform this investigation, a series of free-running tests was conducted in regular waves using an experimental model of a multipurpose cargo ship to quantify the amount of shipping water. The tests were performed on five bow overhang variants with several combinations of wavelength and ship speed conditions. It was observed that the quantity of shipping water was affected by some parameters such as wavelength, ship speed, and bow shape in terms of an overhang extension. The results show the significant influence of an overhang extension, which is associated with the bow flare shape, on the occurrence of water shipping. These results involve the combined incoming regular waves and model speed. 相似文献
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在某肥大型船母型船的基础上设计了几种球鼻艏外形方案,基于CFD技术预报了母性船桨盘面处的伴流分布,通过与试验结果的对比分析,检验了数值预报方法的适用性,在此基础上采用该方法预报了不同球鼻艏方案的桨盘面处的轴向伴流,并使用WOF方法来衡量不同球鼻艏方案对应的轴向伴流均匀情况,通过对比分析得到一种伴流分布相对较好的球鼻艏方案. 相似文献
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介绍了低速肥大型船舶球首型线选优软件的构成,功能和使用方法。以4型船29个球首方案为例,验证了软件的可行性;同时,应用该软件分析了球首主要参数对首部流线及船舶阻力的影响。 相似文献
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若干新船的模型阻力试验中~([1,2]),尽管压载试航状态的吃水和排水量均比满载状态小得多,然而将试验结果换算到实船,却出现了试航状态的有效功率大于满载状态的意外情况。对此,设计部门和船东都不能接受。本文介绍一种上翘型球首,将它替代原型船首,可使试航状态的有效功率显著地降至满载状态以下。 相似文献
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为实现在船舶型线设计中快速生成船舶球首,以船舶球首为研究对象,通过定义控制球首形状的纵向边界线、横向边界线、横剖面形状,设置相关控制参数,以CATIA为开发平台,VB为开发工具,对其进行二次开发,编制球首参数化设计程序,迅速地生成球首三维模型。 相似文献
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在分析球艏形状特征参数、特征曲线和曲面生成的基础上,介绍以Feature、Curve engine和Metasurface为特征机制的球艏参数化方法和实现过程。生成的曲面模型光顺、精度高,可满足工程的需要。 相似文献
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EFD and CFD for KCS heaving and pitching in regular head waves 总被引:3,自引:0,他引:3
Claus D. Simonsen Janne F. Otzen Soizic Joncquez Frederick Stern 《Journal of Marine Science and Technology》2013,18(4):435-459
The KCS container ship was investigated in calm water and regular head seas by means of EFD and CFD. The experimental study was conducted in FORCE Technology’s towing tank in Denmark, and the CFD study was conducted using the URANS codes CFDSHIP-IOWA and Star-CCM+ plus the potential theory code AEGIR. Three speeds were covered and the wave conditions were chosen in order to study the ship’s response in waves under resonance and maximum exciting conditions. In the experiment, the heave and pitch motions and the resistance were measured together with wave elevation of the incoming wave. The model test was designed and conducted in order to enable UA assessment of the measured data. The results show that the ship responds strongly when the resonance and maximum exciting conditions are met. With respect to experimental uncertainty, the level for calm water is comparable to PMM uncertainties for maneuvering testing while the level is higher in waves. Concerning the CFD results, the computation shows a very complex and time-varying flow pattern. For the integral quantities, a comparison between EFD and CFD shows that the computed motions and resistance in calm water is in fair agreement with the measurement. In waves, the motions are still in fair agreement with measured data, but larger differences are observed for the resistance. The mean resistance is reasonable, but the first order amplitude of the resistance time history is underpredicted by CFD. Finally, it seems that the URANS codes are in closer agreement with the measurements compared to the potential theory. 相似文献
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《船舶与海洋工程学报》2016,(1)
The hydrodynamic analysis of a new semi-small waterplane area twin hull(SWATH) suitable for various applications such as small and medium size passenger ferries is presented. This may be an attractive crossover configuration resulting from the merging of two classical shapes: a conventional SWATH and a fast catamaran. The final hull design exhibits a wedge-like waterline shape with the maximum beam at the stern; the hull ends with a very narrow entrance angle, has a prominent bulbous bow typical of SWATH vessels, and features full stern to arrange waterjet propellers. Our analysis aims to perform a preliminary assessment of the hydrodynamic performance of a hull with such a complex shape both in terms of resistance of the hull in calm water and seakeeping capability in regular head waves and compare the performance with that of a conventional SWATH. The analysis is performed using a boundary element method that was preliminarily validated on a conventional SWATH vessel. 相似文献
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The hydrodynamic analysis of a new semi-small waterplane area twin hull (SWATH) suitable for various applications such as small and medium size passenger ferries is presented. This may be an attractive crossover configuration resulting from the merging of two classical shapes: a conventional SWATH and a fast catamaran. The final hull design exhibits a wedge-like waterline shape with the maximum beam at the stern; the hull ends with a very narrow entrance angle, has a prominent bulbous bow typical of SWATH vessels, and features full stern to arrange waterjet propellers. Our analysis aims to perform a preliminary assessment of the hydrodynamic performance of a hull with such a complex shape both in terms of resistance of the hull in calm water and seakeeping capability in regular head waves and compare the performance with that of a conventional SWATH. The analysis is performed using a boundary element method that was preliminarily validated on a conventional SWATH vessel. 相似文献