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Experimental testing and simulations of an autonomous, self-propulsion and self-measuring tanker ship model

机译:自主,自我推进和自我测量的油船模型的实验测试和模拟

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Improving the energy efficiency of ships has generated significant research interest due to the need to reduce operational costs and mitigate negative environmental impacts. Numerous hydrodynamic energy saving technologies have been proposed. Their overall performance needs to be assessed prior to implementation. A new approach to this evaluation is investigated at model scale which applies an approach comparable to that applied for the performance monitoring of a full scale ship. That is long duration testing that measures power consumption for given environmental and ship operating conditions and can use statistical analysis of the resultant large amount of data to identify performance gains. As a demonstration of the approach, an autonomous, self-propelled and self-measuring free running ship model of an Ice Class tanker is developed. A series of lake based and towing tank tests experiments have been conducted which included bollard pull, shaft efficiency, naked-hull, self-propulsion, and manoeuvrability tests. These investigated the efficiency improvement resulting from changing the ship operational trim and testing different bow designs. An associated mathematical model for the time domain simulation of the autonomous ship model provides an effective tool for data analysis. It has been demonstrated that the use of a suitably instrumented self-propelled autonomous ship model can provide long duration tests that incorporates the influence of varying environmental conditions and thereby identify marginal gains in ship energy efficiency.
机译:由于需要降低运营成本和减轻负面的环境影响,提高船舶能效引起了广泛的研究兴趣。已经提出了许多流体动力节能技术。在实施之前,需要评估其总体性能。在模型规模上研究了一种新的评估方法,该方法所采用的方法与全尺寸船舶性能监控所采用的方法相当。这是长时间测试,可以测量给定环境和船舶运行条件下的功耗,并且可以使用对大量数据的统计分析来确定性能提升。作为该方法的证明,开发了一种自主,自我推进和自我测量的“冰级”油轮免费运行船舶模型。已经进行了一系列基于湖泊和拖曳式坦克的试验实验,包括系船柱拉力,轴效率,裸壳,自推进和机动性试验。这些研究人员研究了通过改变舰船的内饰和测试不同的船首设计而提高的效率。用于自主舰船模型的时域仿真的关联数学模型为数据分析提供了有效的工具。已经证明,使用适当装备的自行式自主船舶模型可以提供长期测试,该测试结合了变化的环境条件的影响,从而确定了船舶能效的边际收益。

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