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EXPERIMENTAL STUDY OF THE ICEBREAKING PROCESS OF AN ICEBREAKING TRIMARAN

机译:冰破冰剪裁过程的实验研究

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The primary goal of this paper is to present the results from a larger study of the icebreaking process of an icebreaking trimaran in level ice. Defining the icebreaking process of the trimaran enables further optimization of hull form and enables more efficient ship operations. Furthermore, the objective of this paper is to explain the small ice resistance of the icebreaking trimaran and to present how the distance between the main and side hull affect the ice resistance and the icebreaking process of the trimaran. The phenomenon was studied using ice model tests which were carried out in Aker Arctic's model basin using the latest icebreaking trimaran model. To achieve the most accurate visual data of the icebreaking process, a high-speed camera was used. According to the visual observations, the icebreaking process at the middle hull of the icebreaking trimaran follows the icebreaking process of a traditional single hull ship. However, the icebreaking process of the side hull deviates significantly from the icebreaking process of a single hull ship. The side hull encounters an ice field with microcracks caused by the middle hull. These microcracks enable the side hulls to break the ice with a small resistance. The model test results show, that the small ice resistance of the icebreaking trimaran is due to a beneficial icebreaking process and the small size of the side hull compared to the middle hull. Optimum width is of course depending on the main dimensions of the various hulls. However, the optimum width for the concept studied in this case is around 50 meters when the ice resistance is determined relative to the width of the broken channel.
机译:本文的主要目标是介绍一项较大研究的冰冰中的破冰剪裁的较大研究的结果。定义Trimaran的破冰过程使得能够进一步优化船体形式并实现更有效的船舶操作。此外,本文的目的是解释破冰剪裁的小抗性,并展示主壳和侧壳之间的距离如何影响钢抗性的抗性和剪裁过程。使用最新的Icebreaking Trimaran模型在Aker Arctic的模型盆地中进行了冰型模型试验的现象。为实现破冰过程最准确的视觉数据,使用了高速相机。根据视觉观察,Icebreaking Trimaran中间船体的破冰过程遵循传统单船船的破冰过程。然而,侧壳的破冰过程明显地偏离了单个船体船的破冰过程。侧壳遇到一个由中间船体引起的微裂纹的冰场。这些微裂纹使侧壳能够以小阻力打破冰。模型试验结果表明,破冰剪裁的小型抗抗抗抗抗抗抗抗震是由于有益的破冰过程和侧壳的小尺寸与中间船体相比。最佳宽度当然取决于各种船体的主要尺寸。然而,在这种情况下研究的概念的最佳宽度在相对于断路器的宽度确定抗抗线时约为50米。

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