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Integrity of glass-reinforced plastic (GRP) vessels under ice loading

机译:冰载荷下玻璃钢(GRp)容器的完整性

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摘要

Small glass-reinforced plastic (GRP) vessels, such as lifeboats and fishing vessels are occasionally used in sea ice conditions, despite the lack of structural design standards and operating standards for such conditions. In addition, there is limited knowledge relating to the magnitude of local ice loads on these vessels or the structural integrity of these craft under ice loading. To address these gaps, full-scale measurements relating to lifeboat-ice interactions were collected during a field campaign carried out in 2013 and 2014. During these trials, the local ice loads on the hull of a Totally Enclosed Motor Propelled Survival Craft (TEMPSC) operating in pack ice conditions were measured using instrumented load panels. This full-scale field data provides the foundation for risk-based design load estimation and has been analyzed using the event-maximum method of local ice pressure analysis. This approach is based on probabilistic methods developed for the analysis of ice loads measured on icebreakers, which have been adapted for ice interaction scenarios involving small vessels. Results from this work provide improved understanding into the nature of loads on small GRP vessels operating in ice-covered waters and help to inform design methodology for these vessels. To compliment these results, the field trials were also assessed in terms of the operational methods used by different coxswains when maneuvering through an ice field. Insights from this analysis provide operational guidance towards methods that can mitigate peak impacts and improve the maneuverability of these vessels in ice.
机译:尽管缺乏结构设计标准和操作标准,但偶尔会在海冰条件下使用小型玻璃纤维增​​强塑料(GRP)船,例如救生艇和渔船。另外,关于这些船只上的局部冰负荷的大小或这些船只在冰负荷下的结构完整性的知识有限。为了解决这些差距,在2013年和2014年的一次野战期间收集了与救生艇与冰相互作用相关的全面测量值。在这些试验中,全封闭式机动推进救生艇筏(TEMPSC)的船体局部冰负荷使用仪表板测量在冰块条件下的运行情况。这些全面的现场数据为基于风险的设计负荷估算提供了基础,并且已使用事件最大方法进行局部冰压分析进行了分析。该方法基于为分析破冰船上测得的冰负荷而开发的概率方法,该方法已适用于涉及小型船舶的冰相互作用场景。这项工作的结果使人们更好地了解了在覆冰水域中运行的小型GRP船的负荷性质,并有助于为这些船的设计方法提供依据。为了补充这些结果,还根据在冰原上操纵时不同船长所使用的操作方法对现场试验进行了评估。此分析的见解为可减轻峰值影响并改善这些容器在冰中的可操纵性的方法提供了操作指导。

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    Rahman Md Samsur;

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  • 年度 2014
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