...
首页> 外文期刊>Journal of Ship Research >Experimental Studies on Seakeeping and Maneuverability of Ships in Adverse Weather Conditions
【24h】

Experimental Studies on Seakeeping and Maneuverability of Ships in Adverse Weather Conditions

机译:恶劣天气条件下船舶航海和机动性的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

The introduction of the energy efficiency design index (EEDI), which is applicable for various types of new-built ships after January 1,2013, raised concerns regarding the sufficiency of propulsion power and steering devices to maintain maneuverability in adverse conditions. This was the motivation for the initiation of the EU research project SHOPERA (Energy Efficient Safe SHip OPERAtion, 2013-2016, http://www.shopera.org). The aim of this article is the development of suitable methods, tools, and guidelines to effectively address the above concerns and to enable safe and green shipping. Within the framework of SHOPERA, a comprehensive experimental program of more than 1300 different model tests for three ship hulls of different geometry and hydrodynamic characteristics has been conducted by four leading European maritime experimental research institutes: MAR-INTEK, Norway; CEHIPAR, Spain; Technische Universitat Berlin, Germany; and Flanders Hydraulics Research, Belgium. The tested hull types refer to two public domain designs, namely the KVLCC2 tanker and the Duisburg Test Case (DTC) container ship, as well as to a small RoPax ferry design, which is a proprietary hull design of a member of the SHOPERA consortium. The conducted tests were distributed among the four research institutes to benefit from the unique possibilities of each facility and to gain added value by establishing data sets for the same hull model and test type at different under keel clearances. This article presents the scope of the SHOPERA model test program for the two public domain hull models the KVLCC2 and the DTC. The main particulars and loading conditions for the two vessels as well as the experimental setup is provided to support the interpretation of the experimental data that is presented. The focus lies on the added resistance and drift forces at zero and moderate forward speed, propulsion, and rudder force tests in waves and the assessment of maneuverability of ships in waves, as compared to calm water conditions.
机译:2013年1月1日后适用于各种新型船舶的能效设计指数(EEDI)的引入引起了人们对推进动力和转向装置是否足够以在不利条件下保持机动性的担忧。这是启动欧盟研究项目SHOPERA(2013-2016年,节能安全船舶操作,http://www.shopera.org)的动机。本文的目的是开发合适的方法,工具和指南,以有效解决上述问题并实现安全绿色运输。在SHOPERA的框架内,欧洲的四家领先的海事实验研究机构对三艘具有不同几何形状和流体动力特性的船体进行了1300多种不同模型测试的综合实验计划。西班牙CEHIPAR;德国柏林工业大学;和比利时法兰德斯液压研究公司。经过测试的船体类型涉及两种公共领域设计,即KVLCC2油轮和杜伊斯堡试验箱(DTC)集装箱船,以及小型RoPax轮渡设计,这是SHOPERA联盟成员的专有船体设计。进行的测试分布在四个研究所中,以从每种设施的独特可能性中受益,并通过建立相同船体模型和不同龙骨间隙下的测试类型的数据集来获得增值。本文介绍了两个公共领域的船体模型KVLCC2和DTC的SHOPERA模型测试程序的范围。提供了这两个容器的主要特性和装载条件以及实验装置,以支持对所提供实验数据的解释。重点在于在零浪和中等前进速度,波浪中的推进力和方向舵力测试中增加的阻力和漂移力,以及与平静水面条件相比在波浪中船舶的可操纵性评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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