首页> 外文会议>International conference on port and ocean engineering under arctic conditions >LIMIT STATE IDENTIFICATION FOR ICE-STRENGTHENED HULL STRUCTURES USING MEASURED LONG-TERM LOADS
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LIMIT STATE IDENTIFICATION FOR ICE-STRENGTHENED HULL STRUCTURES USING MEASURED LONG-TERM LOADS

机译:利用测得的长期载荷确定冰增强船体结构的极限状态

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Safety of ships and economic shipping in ice is becoming more and more important since the traffic in ice-covered waters increases and ice-induced damages requiring repair continue to occur. Consequently, this paper will present the influence of the design load level to the probable repair cost following long-term load. Hence, the aim is to identify optimal scantlings following the chosen design load, which minimize the lifetime costs for ship construction and operation. As a case study MS Kemira's hull structure and therewith-measured long-term loads are used to evaluate the sensitivity of the load level with varying occurrence frequency to the production and repair cost. As a result, we will be able to identify the optimum structure by means of production and probable repair cost.
机译:由于在冰雪覆盖的水域中的交通量增加,并且因冰引起的需要维修的损害不断发生,因此在冰中航行的船舶和经济运输的安全性变得越来越重要。因此,本文将介绍设计负荷水平对长期负荷后可能的维修成本的影响。因此,目的是确定符合所选设计载荷的最佳尺寸,从而最大程度地减少船舶建造和运营的生命周期成本。作为案例研究,使用了MS Kemira的船体结构及其测量的长期载荷来评估载荷水平随生产频率的变化对生产和维修成本的敏感性。结果,我们将能够通过生产和可能的维修费用来确定最佳的结构。

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