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首页> 外文期刊>Transportation Research Procedia >A New Routing Optimization Tool-influence of Wind and Waves on Fuel Consumption of Ships with and without Wind Assisted Ship Propulsion Systems
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A New Routing Optimization Tool-influence of Wind and Waves on Fuel Consumption of Ships with and without Wind Assisted Ship Propulsion Systems

机译:有和无风辅助船舶推进系统的风浪对船舶燃料消耗的影响的新型航路优化工具

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Within the research project ROBUST**(Optimization of seaborne trade) a new software tool was developed to find the optimum shipping route, considering the influence of wind and waves on the ship's performance. A further aspect thereby is to assess the potential of wind assisted ship propulsion systems (WASP) in addition to the conventional diesel propulsion.The influence of wind and waves on the ship's performance in general is estimated by experience and model tests before ship construction. For the actual influence on a seagoing cargo ship, there is not much information available. For the research project ROBUST a 17.500 DWT multipurpose cargo ship was equipped with measuring systems (providing all 10min 64 data) to get continuous information about the influence of wind and waves on the ship performance (Wave data, power on shaft, machine consumption,…). For more than one year, data were collected worldwide. These data were used to fit computer models to calculate the influence of wind and waves on the ship performance.Based on these models, a branch and bound optimization system was developed to find the most efficient route for a given weather situation. The optimization is aiming for an energy minimum of the route. As a restriction the modification of the route is limited by a given time window for the traveling time. This effect of a WASP is discussed for a Flettner rotor. Results for a kite system and a Dynarig are calculated as well, but are not presented here. The route optimization system is tested with historical weather data from the German DWD. The simulations show that relative small adoptions of the route to the actual weather situation may give an interesting potential for savings of energy and thereby of costs.**The research project ROBUST is financed by the VW foundation via the country Lower Saxony, Germany.
机译:在研究项目ROBUST **(海上贸易的优化)内,开发了一种新的软件工具,以考虑风浪对船舶性能的影响,找到最佳的运输路线。因此,另一方面是评估除常规柴油机推进之外的风力辅助船舶推进系统(WASP)的潜力。风和波浪对船舶性能的影响通常通过造船之前的经验和模型测试来估算。对于对一艘货船的实际影响,没有太多可用信息。对于研究项目ROBUST,一艘17.500 DWT的多用途货船配备了测量系统(提供所有10分钟64数据),以获取有关风浪对船舶性能的影响的连续信息(波浪数据,轴功率,机器消耗等)。 )。一年多来,全球范围内收集了数据。这些数据被用于拟合计算机模型以计算风和波浪对船舶性能的影响。在这些模型的基础上,开发了分支定界优化系统,以找到针对给定天气情况的最有效路线。优化的目的是使路线的能量最小。作为限制,路线的修改受到行驶时间的给定时间窗口的限制。针对Flettner转子讨论了WASP的这种效果。还计算了风筝系统和Dynarig的结果,但此处未列出。使用德国DWD的历史天气数据对路线优化系统进行了测试。模拟表明,相对于实际天气情况采用较小的路线可能会带来节省能源和降低成本的有趣潜力。**研究项目ROBUST由大众基金会通过德国下萨克森州资助。

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