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Blowin' in the wind? Drivers and barriers for the uptake of wind propulsion in international shipping

机译:吹在风中?国际航运中采用风驱的驱动因素和障碍

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摘要

International shipping transports around 90% of global commerce and is of major importance for the global economy. Whilst it is the most efficient and environmentally friendly mode of transport, CO_2 emissions from shipping activities still account for an estimated 3% of global emissions. One means of significantly reducing fuel consumption and thereby GHG emissions from shipping are wind propulsion technologies (i.e. towing kites, Flettner rotors and sails)-yet current market uptake is very low. Therefore, the aim of this article is to identify the barriers and drivers for the uptake of wind propulsion technologies. To this end, the theoretical approach of technological innovation systems is adopted. This approach combines structural system components with so-called system functions which represent the dynamics underlying structural changes in the system. The fulfillment of these functions is considered important for the development and diffusion of innovations. Based on newspaper and academic articles, online expert interviews and semi-structured interviews, the level of function fulfillment is evaluated, followed by the identification of structural drivers and barriers influencing function fulfillment. Third, the possibilities to influence these drivers and barriers are discussed.
机译:国际航运运输量约占全球贸易量的90%,对全球经济至关重要。尽管这是最高效,最环保的运输方式,但航运活动产生的CO_2排放量仍占全球排放量的3%。显着减少燃料消耗并由此减少运输中的温室气体排放的一种方法是风力推进技术(即牵引风筝,弗莱特纳转子和帆),但目前的市场吸收率很低。因此,本文的目的是确定采用风推进技术的障碍和驱动因素。为此,采用了技术创新系统的理论方法。这种方法将结构系统组件与所谓的系统功能相结合,这些系统功能代表了系统中结构变化的基本动力。这些功能的实现被认为对创新的发展和传播很重要。根据报纸和学术文章,在线专家访谈和半结构化访谈,评估功能实现的水平,然后确定影响功能实现的结构驱动因素和障碍。第三,讨论了影响这些驱动因素和障碍的可能性。

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