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首页> 外文期刊>International journal of mathematics and mathematical sciences >DETERMINATION OF COUPLED SWAY, ROLL, AND YAW MOTIONS OF A FLOATING BODY IN REGULAR WAVES
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DETERMINATION OF COUPLED SWAY, ROLL, AND YAW MOTIONS OF A FLOATING BODY IN REGULAR WAVES

机译:测定矩形波中漂浮体的摇摆,摇摆和横摆运动

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摘要

This paper investigates the motion response of a floating body in time domain under the influence of small amplitude regular waves. The governing equations of motion describing the balance of wave-exciting force with the inertial, damping, and restoring forces are transformed into frequency domain by applying Laplace transform technique. Assuming the floating body is initially at rest and the waves act perpendicular to the vessel of lateral symmetry, hydrodynamic coefficients were obtained in terms of integrated sectional added-mass, damping, and restoring coefficients, derived from Frank's close-fit curve. A numerical experiment on a vessel of 19190 ton displaced mass was carried out for three different wave frequencies, namely, 0.56 rad/s, 0.74 rad/s, and 1.24 rad/s. The damping parameters ( ?i) reveal the system stability criteria, derived from the quartic analysis, corresponding to the undamped frequencies ( βi). It is observed that the sway and yaw motions become maximum for frequency 0.56 rad/s, whereas roll motion is maximum for frequency 0.74 rad/s. All three motions show harmonic behavior and attain dynamic equilibrium for time t>100 seconds. The mathematical approach presented here will be useful to determine seaworthiness characteristics of any vessel when wave amplitudes are small and also to validate complex numerical models.
机译:本文研究了小振幅规则波影响下的浮体在时域中的运动响应。通过应用拉普拉斯变换技术,将描述激波力与惯性力,阻尼力和恢复力之间平衡的运动控制方程式转换到频域。假设浮体最初处于静止状态,并且波垂直于横向对称的船舶作用,则根据弗兰克的紧密拟合曲线得出的积分截面附加质量,阻尼和恢复系数获得流体力学系数。对19190吨排水量的船舶进行了三种不同的波频率,即0.56 rad / s,0.74 rad / s和1.24 rad / s的数值实验。阻尼参数(?i)揭示了系统稳定性标准,该标准是根据四次分析得出的,与无阻尼频率(βi)相对应。可以看出,摇摆和偏航运动在频率0.56 rad / s时最大,而侧倾运动在频率0.74 rad / s时最大。这三个动作均表现出谐波行为,并在时间t> 100秒内达到动态平衡。此处介绍的数学方法将有助于确定当波幅较小时任何船只的适航性,并有助于验证复杂的数值模型。

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