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Review of risk-based design for ice-class ships

机译:审查基于风险的冰级船舶设计

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The growing interest for Arctic and Antarctic shipping activities due to the decreasing ice cover will also increase the risks of accidents on these waters. The design of ships for ice has traditionally been based on the practical experience without a clear link to the physics of the ship-ice interaction. The rules are, however, getting more towards the goal based approach, which require good knowledge of all the various element important for design. Risk based ship design (RBSD) is also widely applied e.g. for the passengers ships. Therefore, the scope of this paper is the review of the knowledge necessary for RBSD for Arctic conditions. The main focus is on ice loads and ship structures. Accident prevention and environmental consequences of oil spills are also discussed, but more briefly. In risk analysis, there is a recent focus on the treatment of uncertainty, or conversely, the strength of knowledge underlying the risk quantification. In light of this, the review is performed with specific focus on the strength of evidence of the different fields of knowledge needed to perform RBSD in ice conditions. The results indicate that the risk based design for Arctic operations is challenging as the ice environment, together with all the possible ship-ice contact scenarios, are complicated to define properly, especially on proper probabilistic terms, The main challenges are still related how to describe the ship-ice interaction parameters such as ship-ice contact characteristics, pressure distributions, and load levels in all the various ice conditions. In addition, the possible environmental consequences of the accidents need further research. Finally, human factors need to be incorporated in risk analysis techniques.
机译:由于冰层减少,人们对北极和南极航运活动的兴趣日益浓厚,这也将增加这些水域发生事故的风险。传统上,冰船的设计是基于实际经验,与船冰相互作用的物理原理没有明确的联系。但是,这些规则正越来越朝着基于目标的方法发展,这需要对设计重要的所有各个要素都有充分的了解。基于风险的船舶设计(RBSD)也得到了广泛应用,例如为客船。因此,本文的范围是对北极条件下RBSD所必需的知识的回顾。主要重点是冰荷载和船舶结构。还讨论了漏油的事故预防和环境后果,但更为简短。在风险分析中,最近的重点是不确定性的处理,或者相反,风险量化背后的知识强度。有鉴于此,审查的重点是在冰层条件下进行RBSD所需的不同知识领域的证据。结果表明,北极操作的基于风险的设计具有挑战性,因为冰环境以及所有可能的船冰接触场景很难正确地定义,尤其是在正确的概率条件下,主要挑战仍然与如何描述有关。在各种冰条件下,船冰相互作用参数,例如船冰接触特性,压力分布和载荷水平。此外,事故可能对环境造成的影响还需要进一步研究。最后,需要将人为因素纳入风险分析技术中。

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