首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >AN OPTIMIZATION METHOD FOR ECONOMICAL SHIP-ROUTING AND SHIP OPERATION CONSIDERING THE EFFECT OF WIND-ASSISTED ROTORS
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AN OPTIMIZATION METHOD FOR ECONOMICAL SHIP-ROUTING AND SHIP OPERATION CONSIDERING THE EFFECT OF WIND-ASSISTED ROTORS

机译:考虑风辅转子效果的经济船舶路由和船舶操作的优化方法

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With the increasingly strict regulations for energy saving and emission reduction technology of ships, minimizing fuel cost is one of the most critical issues in the design and operation of merchant ships. A method to reduce the fuel cost for merchant ship is to select an economical route based on the real-time meteorological environment and weather forecasting data. So far, numerous ship routing strategies have been proposed with the development of weather routing system. More recently, many wind-assisted devices like rotors, wind sails, etc. have been investigated and designed to utilize the renewable wind energy. With the equipment of wind-assisted rotors, the optimization of ship route becomes more important because the effect of this wind-assisted device highly depends on the local wind field along the ship route. In this paper, an improved optimization strategy with the combination of the A* algorithm and a realtime optimizer has been proposed to determinate the optimal ship route and ship operations including ship heading, propeller's rpm and rotor's rpm. The real-time information for the weather conditions, ocean climate and sea states are obtained from European Center for Medium-range Weather Forecasts and the ship performance is evaluated by data-driven models. Finally, the proposed method was applied to test cases of ships operating in Pacific route and Indian Ocean route and the results show that the total fuel consumption could be reduced compared to the minimum distance route.
机译:随着船舶节能减排技术的越来越严格的规定,最大限度地减少燃料成本是商品船舶设计和运营中最关键的问题之一。一种降低商船燃料成本的方法是基于实时气象环境和天气预报数据选择经济途径。到目前为止,已提出众多船舶路线策略随着天气路由系统的发展。最近,已经研究了许多风帆,风帆等风辅助装置,并设计用于利用可再生风能。利用风辅助转子的设备,船舶路线的优化变得更加重要,因为该风辅助装置的效果高度取决于沿着船舶路线的局部风力场。在本文中,提出了一种改进的优化策略,具有A *算法和实时优化器的组合来确定最佳船舶路线和船舶操作,包括船舶标题,螺旋桨的RPM和转子的RPM。天气状况,海洋气候和海州的实时信息是从欧洲中距离的天气预报中获得的,船舶性能由数据驱动的模型进行评估。最后,将所提出的方法应用于在太平洋路线和印度洋航线上运行的船舶的测试案例,结果表明,与最小距离路线相比,可以减少总燃料消耗。

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