首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >UNCERTAINTY ANALYSIS OF FREE RUNNING MANOEUVRING MODEL TEST ON A MODERN FERRY, WITH EMPHASIS ON HEEL ANGLES
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UNCERTAINTY ANALYSIS OF FREE RUNNING MANOEUVRING MODEL TEST ON A MODERN FERRY, WITH EMPHASIS ON HEEL ANGLES

机译:现代轮渡自由驾驶机动模型试验不确定性分析

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This paper presents an uncertainty study on the manoeuvring behaviour of a twin screw ferry. In particular, we are interested in heel angles that this ship achieves while manoeuvring. Earlier published uncertainty analysis has focused on the uncertainty of overshoot angles and tactical diameters see [1] and [2]. The heel angles of these ships are not large. However, there is a class of ships that may encounter large heel angles due to steering. Ferries are such ships. The present paper quantifies also the uncertainty of the measured heel angles due to manoeuvres. During the model test series, results are obtained for various values of the stability (GM), where large heel angles are observed. This provides a unique insight in the relation between the GM, approach speed, directional stability and the achieved heel angles. Because of the demonstrated large heel angles, it was important to make an uncertainty analysis of these tests. More publications have been written on the uncertainty of overshoot angles and dimensions of turning circle manoeuvres. However, the uncertainty of heel angles during manoeuvres hasn't been published yet, which makes this a unique paper. The uncertainty analysis will be based on repeat tests for the zigzag 10°/10° and 35° turning circle manoeuvres. Repeat tests are carried out for these manoeuvres to verify the mean and the uncertainty of the experimentally obtained values. The methodology for estimating the uncertainty with 95% confidence bounds are derived by accounting for 1) uncertainty from measurement, 2) repeat tests and 3) the uncertainty from propagation of initial conditions and the error in check angle and rudder. The uncertainty results are compared with a previous study of uncertainty of manoeuvring characteristics of model tests with the KVLCC2 [1] and [2].
机译:本文提出了关于双螺旋渡轮操纵行为的不确定性研究。特别是,我们对这艘船在操纵时所能达到的跟角感兴趣。较早发表的不确定性分析集中在过冲角和战术直径的不确定性上,参见[1]和[2]。这些船的后倾角不大。然而,有一类船由于转向可能会遇到较大的跟角。渡轮就是这样的船。本文还量化了由于操纵引起的测得的横倾角的不确定性。在模型测试系列中,获得了各种稳定性(GM)值的结果,其中观察到较大的横倾角。这提供了关于GM,进近速度,方向稳定性和所获得的横倾角之间关系的独特见解。由于证明了较大的横倾角,因此对这些测试进行不确定性分析很重要。关于超调角度和转弯圆弧尺寸的不确定性,已经发表了更多的出版物。但是,操纵过程中后跟角度的不确定性尚未公布,这使它成为独特的论文。不确定性分析将基于曲折10°/ 10°和35°旋转圆弧动作的重复测试。对这些操作进行重复测试,以验证实验获得的值的平均值和不确定性。通过考虑以下因素得出推定具有95%置信范围的不确定性的方法:1)测量的不确定性,2)重复测试,以及3)初始条件传播的不确定性以及检查角和方向舵的误差。将不确定性结果与先前使用KVLCC2 [1]和[2]进行的模型测试的操纵特性不确定性研究进行了比较。

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