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Computational investigation of ship propulsion performance in rough seas

机译:汹涌海域船舶推进性能的计算研究

摘要

In this paper, the performance of a merchant vessel propulsion system during acceleration is evaluated under different sea state conditions. The various parts of the main propulsion system have been modelled by using a mean value approach for the engine model with differential equations to calculate the engine crankshaft and turbocharger shaft speeds. Ship propulsion system has been modelled by using differential equations to calculate vessel speed and speed of advance. The output of the engine model has been validated under steady conditions according to the main engine shop test performance data. The calm water resistance is calculated following the ship sea trials results, whilst Wageningen polynomials have been used to simulate the propeller performance for the given hull resistance and speed. In order to estimate the added resistance for different weather conditions, the recommended procedures by International Standards have been followed. Then, the propulsion system performance is evaluated, both in calm water and waves, to investigate the main engine response during acceleration. Based on the simulation results, the propulsion system performance is discussed in respect for the engine response and vessel hydrodynamic performance, predicting the maximum vessel speed for the available engine power and speed.
机译:在本文中,评估了商船推进系统在加速期间在不同海况下的性能。通过使用带有微分方程的发动机模型的均值方法对主推进系统的各个部分进行建模,以计算发动机曲轴和涡轮增压器的轴速。船舶推进系统已经通过使用微分方程来建模,以计算船舶速度和前进速度。发动机模型的输出已根据主机厂测试性能数据在稳定条件下进行了验证。静水阻力是根据船舶海试结果计算的,而瓦赫宁根多项式已被用于模拟给定的船体阻力和速度下的螺旋桨性能。为了估算不同天气条件下的附加阻力,已遵循国际标准推荐的程序。然后,在平静的水面和波浪中评估推进系统的性能,以研究加速期间主机的响应。基于仿真结果,就发动机响应和船舶流体动力性能讨论了推进系统性能,并预测了可用发动机功率和速度下的最大船舶速度。

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