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An empirical method for the estimation of towing resistance of a life raft in various sea states

机译:估算各种海况下救生筏的​​抗拖曳性的经验方法

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摘要

Current IMO regulations require life rafts to be tow tested only in calm water. In real evacuation situations, life rafts are deployed in the prevailing environmental conditions, with wind and waves. Added wave resistance is small at low wave heights but increases nonlinearly with increased wave height. If life rafts are to be towed in moderate seas (up to 4 m significant wave height), tow force estimates based only on calm water tow resistance become less reliable. Tow patches, towline, towing craft etc. also need to be designed to withstand dynamic wave loading in addition to mean load. Therefore, mean tow force, tow force variation and maximum tow force are important. A full-scale 16-person, commercially available, SOLAS approved life raft was towed in the tank, in upwind, head seas with significant wave height of 0.5 m. The measured tow force showed that it could be treated as a linear system with wave amplitude, by demonstrating that tow force is mainly inertial and follows a Rayleigh distribution. Therefore, extreme-value statistics used for waves can be applied to developing equations for predicting tow force. A method is proposed to predict life raft tow force at different tow speeds and in various sea states, with waves and wind. The method involved using tank experiments to obtain tow force response for one sea state. The information can then be used to predict life raft tow force in wind and waves for different sea states. Three equations are proposed to demonstrate that a simple tank experiment could provide valuable information necessary to empirically estimate the mean tow force, tow force variation and maximum tow force for a specific life raft in different sea states. The equations are developed for upwind, head seas. These equations were extensively validated using tow force measured in the tank. They were partially validated with limited sea trial data, by towing the same 16-person life raft and a 42-person life raft in upwind, head seas with significant wave height of 1.3 m. The equations were able to predict maximum tow forces to within 15% of the measured.
机译:现行的IMO法规要求只能在平静的水中对救生筏进行拖曳测试。在实际的疏散情况下,救生筏在风吹浪打的主要环境条件下部署。在低波高处,附加的波阻很小,但随着波高的增加而非线性增加。如果要在适度的海域中拖曳救生筏(最大波高不超过4 m),则仅基于平静水拖曳阻力的拖曳力估算就变得不太可靠。除平均载荷外,还需要设计牵引补丁,牵引线,牵引艇等,以承受动态波浪载荷。因此,平均牵引力,牵引力变化和最大牵引力很重要。 SOLAS认可的救生员筏可在市场上顺风航行,拖曳高度为0.5 m的16人规模的全尺寸救生筏。测得的牵引力表明,牵引力主要是惯性的,并且遵循瑞利分布,因此可以将其视为具有振幅的线性系统。因此,用于波浪的极值统计可以应用于开发用于预测牵引力的方程式。提出了一种通过波浪和风来预测不同拖曳速度和不同海况下救生筏拖曳力的方法。该方法涉及使用坦克实验来获得一种海况下的拖曳力响应。然后,该信息可用于预测不同海况下的救生筏在风浪中的牵引力。提出了三个方程式,以证明简单的油箱实验可以提供宝贵的信息,以经验估算特定救生筏在不同海况下的平均牵引力,牵引力变化和最大牵引力。这些方程式是为迎风,逆海而开发的。这些方程式是使用油箱中测得的牵引力进行了广泛验证的。通过在相同的16人救生筏和42人救生筏在逆风大浪高度为1.3 m的逆海拖曳相同的16人救生筏和42人救生筏,部分验证了他们的有限海上试验数据。这些方程式能够预测最大牵引力在测量值的15%以内。

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