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REAL-TIME EVALUATION OF SECOND GENERATION INTACT STABILITY CRITERIA

机译:第二代完整稳定标准的实时评估

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The performance of a vessel cannot solely be determined as a function of its size, speed and autonomy. The seakeeping behaviour of the vessel in extreme weather conditions is very difficult to predict and the IMO is in the process of introducing new intact stability regulations to deal with failure modes generally associated with extreme weather conditions such as parametric rolling, broaching or pure loss of stability in astern waves. Traditionally, the on-board crew only operates the vessel from one location to another whilst any other repairs, maintenance or decisions will be carried out by a support crew onshore. The rapid increase of computer power and communication technology allows the on-board crew to perform an advanced computation based on the real-time behaviour of the sailing vessel. At the International Maritime Organisation (IMO), the development of second generation intact stability criteria is thoroughly discussed before being implemented and enforced in the maritime industry. The lower level (level 1) criteria are conservative but can be easily implemented in stability codes. In this particular study it is examined how an existing and extensively used commercial computer code, in the present case GHS, can handle level 1 criteria. The possibility of interfacing with and integrating into on-board systems for the evaluation of second generation intact stability criteria based on real-time data collected from on-board systems is explored. The proposal is to interface the stability code with the existing Integrated Platform Management System (IPMS) and Weather Meteorological System (WMS). This paper describes the procedure and presents an illustrative example.
机译:船舶的性能不能仅仅被确定为其大小,速度和自主性的函数。在极端天气条件下的船只的海保行为是非常难以预测的,IMO正在引入新的完整稳定规定,以处理通常与极端天气条件相关的失效模式,例如参数滚动,拉削或纯粹的稳定性损失在船场波浪。传统上,车载工作人员只能将船只从一个位置操作到另一个位置,而任何其他维修,维护或决定将由支持船员境内进行。计算机电力和通信技术的快速增长允许车载工作人员根据帆船的实时行为来执行先进的计算。在国际海事组织(IMO),在海事行业实施和执行之前,彻底讨论了第二代完整稳定标准的发展。较低级别(1)标准是保守的,但可以在稳定性代码中轻松实现。在该特定的研究中,检查了当前情况的GHS中现有和广泛的商业计算机代码如何处理1级标准。探讨了基于从车载系统中收集的实时数据进行交换和集成到载载机的载体系统中的载入系统的可能性。该提议是将稳定性码与现有的集成平台管理系统(IPMS)和天气气象系统(WMS)接口。本文介绍了该过程并提出了说明性示例。

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