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Simulation of Ship Movement after Steering System Failure to Determine the Worst Case Scenario of Grounding

机译:确定转向系统最坏情况后转向系统失效后船舶运动的仿真

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摘要

Ship grounding is one of the primary maritime navigation casualties and a result of an error made by the navigating officer, of a technical failure on vital ship equipment or of force majeure. In order to decrease the risk of grounding in such cases, this paper explores the ship movement during navigation when an extraordinary event occurs, such as steering system failure that affects the vessel’s direction directly and speed indirectly. One way to determine the ship movement in such circumstances is by simulating the ship movement on the navigational simulator according to the predefined scenarios, as explained in this paper. A total of 60 scenarios were researched, in the process of which ship type, ship size, ship speed and rudder deflection angle were varied. During the simulation, all relevant data concerning current movement of the ship and a graphical display of the performed simulation were recorded every 30 seconds. On the basis of the simulation results it is possible to determine the worst case scenario which can be used to define the consequence of grounding, one of the parameters necessary for the assessment of the risk of grounding.
机译:船舶停飞是主要的海上航行人员伤亡之一,并且是由于导航员的失误,重要船舶设备的技术故障或不可抗力造成的。为了降低在这种情况下的着陆风险,本文探讨了导航系统在发生特殊事件时的航行情况,例如转向系统故障直接或间接影响船舶的方向。在这种情况下确定船舶运动的一种方法是根据预定义的方案在导航模拟器上模拟船舶运动,如本白皮书所述。共研究了60种情况,在此过程中,船的类型,大小,速度和方向舵偏转角都发生了变化。在模拟过程中,每30秒记录一次与船舶当前运动有关的所有相关数据以及所执行模拟的图形显示。根据模拟结果,可以确定最坏的情况,该情况可用于定义接地的后果,这是评估接地风险所必需的参数之一。

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