Self-Propulsion Experiment for Icebreakers in Ice and Open Water

W. Molyneux
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引用次数: 2

Abstract

An icebreaker propulsion system has to be versatile in order to perform at optimum efficiency in all operating conditions. It must be economical when steaming in open water, and yet deliver large thrusts in the bollard condition. It must also withstand the loads imposed by the fee, which can be in the form of a steady load during tee milling, or a transient load due to tee impact. All these factors combine in a complicated manner, and physical model experiments are currently the best method available for studying the problem. An experiment program to predict the propulsive performance of an icebreaker must therefore address both the open water and icebreaking aspects, in an accurate and efficient manner. This paper discusses some techniques developed to predict the propulsive performance of large ice­breakers, using models in a refrigerated tee basin and a towing tank. It is based on some experiments recently carried out at the Institute for Marine Dynamics (IMO). in St. John's, Newfoundland and the results are used for illustration purposes throughout this paper.
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破冰船在冰面和开阔水域的自推进试验
破冰船推进系统必须是通用的,以便在所有操作条件下都能以最佳效率运行。当在开阔水域航行时,它必须是经济的,但在系柱条件下提供大推力。它还必须承受由费用施加的载荷,这些载荷可以是三通铣削期间的稳定载荷,也可以是由于三通冲击引起的瞬态载荷。所有这些因素以一种复杂的方式组合在一起,物理模型实验是目前研究这一问题的最佳方法。因此,预测破冰船推进性能的实验计划必须以准确和有效的方式解决开放水域和破冰方面的问题。本文讨论了大型破冰船推进性能预测的一些技术,采用了冷藏三通水槽和拖曳槽模型。它是基于海洋动力研究所(IMO)最近进行的一些实验。在圣约翰,纽芬兰和结果用于说明目的,在整个论文。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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