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A comprehensive general simulation of small twin screw displacement hull boats with validation

机译:小型双螺杆排水船体船体的全面综合仿真并验证

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A comprehensive general simulation of small twin screw displacement hull boats is developed as a tool to estimate ship and actuator responses in support of developing and tuning of control systems. The general form of this model allows many small displacement hull vessels to be rapidly simulated by specifying a set of 17 vessel parameters. The response of the vessel in the surge, sway and yaw degrees of motion are estimated from parametric equations and data compiled from literature and, when not found in literature, inferred from sea trials. Model validation and tuning of the coefficients not found in literature is accomplished using manoeuvring and response data obtained in a series of sea trials. The parametric model proved to be accurate and, when compared with the sea trial data, model estimates have rms errors over the vessel operational range of 0.09 m/s and 0.02 m/s for surge velocity when moving in a straight line in forward and reverse, respectively. For rotating on a fixed point, the simulation overestimates the rotational velocity by 7.6% and has an rms error of 0.27°/s. Open loop circle tests show that with both propellers rotating at 580 rpm, the simulated vessel has a minimum turning radius of 24.4 m and can complete a circle in 44 s, which is 18% smaller and 8% faster than during sea trials. Simulated rotation with the engines in opposite gears at similar RPMs of 500 result in a complete revolution in 68 s, 3 s faster than during sea trials.
机译:开发了小型双螺杆排量船体船的综合通用仿真,作为估算船和执行器响应的工具,以支持控制系统的开发和调试。该模型的一般形式允许通过指定一组17种船只参数来快速模拟许多小排量船体船只。船舶在喘振,摇摆和偏航运动中的响应是根据参数方程式和文献中收集的数据进行估算的,而在文献中未发现时,则是根据海上试验得出的。使用一系列海试中获得的操纵和响应数据,可以完成文献中未发现的系数的模型验证和调整。该参数模型被证明是准确的,并且与海试数据相比,模型估计值在船舶操作范围内的均方根误差为0.09 m / s,而在向前和向后直线移动时浪涌速度为0.02 m / s , 分别。对于在固定点上旋转,该模拟将旋转速度高估了7.6%,并且均方根误差为0.27°/ s。开环圈测试表明,两个螺旋桨均以580 rpm的转速旋转时,模拟船的最小转弯半径为24.4 m,可以在44 s内完成一个圆,这比海上试验小18%,快8%。发动机在相反档位下以500的相似RPM进行的模拟旋转可在68 s内完成一次完整的旋转,比海上试验要快3 s。

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