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Wing Sails for Hybrid Propulsion of a Ship

机译:翼帆用于船舶的混合动力推进

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摘要

Various types of hybrid drives are increasingly being applied in transportation. Wing sails can provide additional propulsion to a motor-driven ship, thereby decreasing fossil fuel consumption. This article contributes to the selection and consideration of the influencing parameters for applying wing sails for ship propulsion. Basic developmental factors and application of wing sails are described. In addition, influential parameters and their relations are discussed. These parameters are connected to the physical and mechanical properties of wing sails and their impact on propulsion. It is important to recognize certain contributions of every influential parameter in relation to the final achievement. Parameters are ranked and described for several common types of sails, to find the best solution. Changing values of the influencing parameters on wing sails can significantly increase converted wind energy. The aim of this study was to note the parameters that influence the wing sail to drive ships more efficiently. Their importance is explained in an example based on the two most important sail types. This article evaluates the main parameters for a pointed semi-rigid wing with additional circulation for hybrid propulsion. All further research should be focused on this wing. Finally, guidelines for structural and operational changes in future wing sails are provided, which may assist developers in directing their efforts to discover a better solution for ship propulsion.
机译:各种类型的混合动力驱动器越来越多地应用于交通运输中。翼帆可以为机动船提供额外的推进力,从而减少化石燃料的消耗。本文有助于选择和考虑将翼帆用于船舶推进的影响参数。描述了翼帆的基本发展因素和应用。此外,还讨论了有影响的参数及其关系。这些参数与机翼帆的物理和机械特性及其对推进的影响有关。重要的是要认识到每个影响因素对最终成就的某些贡献。对几种常见风帆类型的参数进行排序和描述,以找到最佳解决方案。改变翼帆上影响参数的值可以显着增加转换后的风能。这项研究的目的是指出影响翼帆以更有效地驱动船舶的参数。在基于两个最重要的帆类型的示例中说明了它们的重要性。本文评估了带有混合动力的附加循环的尖头半刚性机翼的主要参数。所有进一步的研究都应集中在这一方面。最后,提供了有关未来翼帆的结构和操作变更的指南,这些指南可帮助开发人员指导他们的工作,以发现更好的船舶推进解决方案。

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