7597吨排水量的波浪高度对船舶运动的有限元分析

H. Hamzah
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引用次数: 0

摘要

耐浪性是指船只在波浪中保持漂浮的能力。船舶的机动性受到与船舶所航行的海域和海况有关的外部因素的很大影响。在保浪性计算中,为了保证船舶航行时的安全,需要考虑不同深度、水流和浪高变化的保浪性计算。在保浪性计算中,采用线性条形理论计算起伏和俯仰运动的响应,采用横摇阻尼理论计算横摇运动的响应。本文采用有限元软件水动力衍射和水动力时间响应对船舶运动进行了计算。对于浪高和水深的变化,参考印尼水域的情况,从参考中,浪高的变化为3米,和5米(根据海况WMO)。相比之下,电流变化使用的是航速为10节的电流,电流深度为10 T、15 T、20 T。根据数据处理中获得的数据可以看出,在90度和270度波向处获得的波频高值相对较高。0度和270度方向的横摇谱值较大,会引起船舶的横摇。在0度和270度方向上,船舶可以减小波浪阻力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis Of Wave Height To Ship Motion With Displacement Of 7,597 Tons By Finite Element Method
Seakeeping is the ship's ability to stay afloat on the waves. The ship's maneuverability is greatly influenced by external factors related to the state of the sea and the waters in which the ship sails. Calculating seakeeping with various variations of depth, current, and wave height is needed for ship safety when sailing in the calculation of seakeeping using linear strip theory to calculate the response of heaving and pitching movements while roll damping theory for rolling movements. In this study, the ship's motion is calculated using the Finite element method software Hydrodynamic Diffraction and Hydrodynamic Time Response. For variations in wave height and water depth, referring to the conditions of Indonesian waters, from the reference, variations in wave height of 3 m, and 5 m (based on sea state WMO). In contrast, the current variation uses a current with a speed of 10 knots and a current depth of 10 T, 15 T, and 20 T. Based on the data obtained in data processing, it can be seen that the high value of the wave frequency obtained at 90 and 270 degrees wave direction is relatively high. The value of the roll spectrum in the direction of 0 and 270 degrees is large and can cause rolling on the ship. In the direction of 0 and 270 degrees, the wave resistance can be reduced by the ship.
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