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Cruising Performance of Indonesian Ro-RO Ferries Under Action of Wind and Waves

机译:风浪作用下印尼滚装客轮的巡航性能

摘要

The ro-ro ferries play an important role in Indonesian sea transportation. Therefore, performance of the Indonesian ro-ro ferries in operation become important in technical and economical point of view. This paper discusses effect of wind and wave to the ship speed, drift and rudder angle in order to maintain the ship direction. The wind velocities of 5 m/s, 10 m/s, 15 m/s, 20 m/s and 25 m/s with variation of direction from 0 degree (head wind) to 180 degrees (following wind) are used to investigated its effect on ship speed, drift angle and rudder angle. The wave is assumed to be fully developed due to wind. Therefore the wave parameters are determined using wind and wave correlation as defined in Beaufort scale. These environment parameters are used to numerically solve the maneuvering equation based on MMG model by using the Newton-Rhapson method.udResults of the numerical simulation show that the wind effect to the drift angle become significant in the wind and wave direction less than 80.0 degrees. In this range of wind and wave direction, effect of wave height is neglected small. The 0 effect of wave on the drift angle tends to be increase in range of wind and direction from 80.0 degrees up to 180.0 degrees. The necessary rudder angle is dominantly affected by the wind in the wind and wave direction of 40.0 degrees or larger. The wave effect becomes significant in the wind and wave direction is smaller that 100.0 degrees. The ship speed is significantly affected by the wind velocity compared with the effect of wave height. The effect of wave height to the ship speed occurs in the range of wind and wave direction from 20.0 degrees up to 100.0 degrees.
机译:滚装渡轮在印尼海上运输中发挥着重要作用。因此,从技术和经济的角度来看,印尼滚装渡轮在运营中的性能变得很重要。本文讨论了风浪对船舶速度,漂移和舵角的影响,以保持船舶方向。使用风速为5 m / s,10 m / s,15 m / s,20 m / s和25 m / s的方向从0度(逆风)到180度(随风)变化进行研究它对船速,漂移角和舵角的影响。假定该波由于风而完全展开。因此,使用博福特量表中定义的风和波相关性来确定波参数。这些环境参数被用于使用牛顿-拉普森方法对基于MMG模型的操纵方程进行数值求解。 ud数值模拟结果表明,风向对漂移角的影响在风向和波浪方向小于80.0度时变得显着。在该风向和波浪方向的范围内,忽略波浪高度的影响很小。波浪对漂移角的0效应在风向和方向范围内从80.0度到180.0度都有增加的趋势。必要的舵角主要受风向和风向的影响,风向为40.0度或更大。波浪效应在风中变得很明显,并且波浪方向小于100.0度。与波高的影响相比,船速受风速的影响很大。波浪高度对船速的影响发生在从20.0度到100.0度的风向和波向范围内。

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