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DEVELOPMENT OF HULL FORMS FOR A 190,000 DWT ICEBREAKING ORE CARRIER

机译:船体形式的发展为190,000 DWT破冰矿石载体

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This paper describes the development of three candidate hull forms for 190,000 DWT ore carrier for operation in ice covered water. It builds on Hyundai Heavy Industries expertise in ore carrier design, and discusses some of the changes required for operation in heavy ice conditions. The overall concept was to have a target speed of 6 knots in land fast ice 1.7m thick and 15 knots in open water. Three candidate bow shapes were designed and analyzed, based on a common stern arrangement. The development of the hull form included three methods of predicting the performance of the ships in ice. Empirical analysis was carried out for all three hulls, based on experience gained from model experiments on bulk carrier hull forms in ice. Numerical analysis was carried out on all three bow shapes using a computer program (based on the discrete element method) to simulate the interaction between the ship and the ice. Physical model experiments were carried out for resistance and propulsion in level ice, pack ice and ridges on the selected design. As a result of the model experiments, the selected bow shape was modified to reduce its resistance in ice. The improved performance of the modified hull was confirmed with additional numerical simulations.
机译:本文介绍了为190,000 DWT矿产载体的三种候选船体形式的开发,用于在冰覆盖的水中进行操作。它在矿石航空公司设计中的现代重工业专业知识,探讨了沉重冰条件下运行所需的一些变化。整体概念是在土地快速冰上有6节的目标速度为1.7米厚,开阔的水中15节。基于共同的船尾安排,设计并分析了三个候选蝴蝶结形状。船体形式的发展包括三种预测冰船舶性能的方法。基于从模型实验中的体验,对所有三个船体进行了实证分析。使用计算机程序(基于离散元素方法)在所有三个弓形形状上进行数值分析,以模拟船舶与冰之间的相互作用。物理模型实验进行抗性和推进水平冰,包装冰和脊在所选设计上的抗性和推进。由于模型实验,修饰了所选弓形以降低其在冰中的电阻。通过额外的数值模拟确认改进的船体的改进性能。

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