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Theoretical and experimental analysis of a slack towline motion on tug-towed ship during turning

机译:拖曳船转弯时松弛的拖链运动的理论和实验分析

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摘要

Concerning the safety of towing, a slack towline condition on tug-towed ship motions interaction during turning is necessary to be studied. This paper presents a fundamental investigation aimed at gaining a more comprehensive insight into the basic mechanism of the slack towline condition identified via several towing parameters affecting its occurrence. Through applying steady turning theory of the tug-towed ship presented by Fitriadhy and Yasukawa (2011a), a slack towline formula is derived, which is capable of defining a boundary limit of their turning ability before the towline falls into the slack condition. Several criteria of the slack towline are described and the reason behind its proposed formula explained. A comprehensive theoretical clarification is presented here using nonlinear analysis for a better prediction of their turning ability including capturing the slack towline condition, where effects of towline length and deflection-rudder angle are discussed. The results revealed that the tug was vulnerable to lose handling of towing with respect to the towed ship that led to the towline falling into the slack condition. For validation, a series of turning tests for the towed ship model were carried out at Towing-Tank in which the theoretical approaches agreed qualitatively with the experimental results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:关于拖曳的安全性,有必要研究在转向过程中拖曳拖曳的船舶运动相互作用的松弛拖曳条件。本文提出了一项基础研究,旨在通过对影响其发生的几个牵引参数来识别松弛的拖链状况的基本机制进行更全面的了解。通过应用Fitriadhy和Yasukawa(2011a)提出的拖船平稳转向理论,推导了松弛的拖缆公式,该公式可以定义拖曳船在进入松弛状态之前其转向能力的边界极限。描述了松弛拖缆的几个标准,并解释了其提出的公式背后的原因。此处使用非线性分析对理论进行了全面的阐述,以更好地预测其转向能力,包括捕获松弛的拖链条件,并讨论了拖链长度和偏转舵角的影响。结果表明,相对于被拖船而言,拖船很容易失去对拖船的处理,从而导致拖船陷入松弛状态。为了进行验证,在拖曳坦克上进行了拖船模型的一系列转向试验,其理论方法在质量上与实验结果吻合。 (C)2015 Elsevier Ltd.保留所有权利。

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