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Sustainable energy design of cruise ships through dynamic simulations: Multi-objective optimization for waste heat recovery

机译:通过动态模拟的游轮可持续能源设计:废热回收的多目标优化

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Modern cruise ships are energivorous systems and their design is challenging due to stringent restrictions on the environmental impact recently imposed by the International Maritime Organization. Nowadays, energy saving technologies and strategies for ships can be selected and analysed by means of system dynamic simulations. In this paper this innovative goal is obtained through TRNSYS where the ship-envelope and the related energy system are modelled and simulated by means of new customized weather data with the aim to optimize the system energy performance by considering different objective function (maximum energy saving, minimum payback, etc.). To show the effectiveness of the proposed approach, a novel case study is presented. It refers to a modern cruise ship fuelled by liquefied natural gas cruising in Mediterranean and Caribbean seas. Novel hourly weather files are developed for accounting actual locations and orientations of the moving ship. Low-, mediumand high-temperature engines waste heat recoveries are exploited for supplying different thermally activated energy saving devices. Results of the conducted optimization procedure show significant reductions of fuel consumption (between 0.1 and 1.9 kt/y), operating costs (up to 615 k(sic)/y), and pollutant emissions with respect to traditional systems. Short paybacks are obtained (lower than 5 years), depending on the considered innovative system layouts. Finally, useful design and operating criteria for ship manufacturers and users are provided.
机译:现代巡航船是能源系统,其设计是挑战,因为对最近由国际海事组织最近施加的环境影响的严格限制。如今,通过系统动态模拟可以选择和分析节能技术和船舶的策略。在本文中,这一创新目标是通过TRNSYS通过新的定制天气数据进行建模和模拟的TRNSYS获得,目的是通过考虑不同的客观函数来优化系统能源性能(最大节能,最低回报等)。为了表明所提出的方法的有效性,提出了一种新的案例研究。它是指由地中海和加勒比海的液化天然气巡航的液化天然气推动的现代游轮。开发了新的每小时天气文件,用于考虑移动船的实际位置和方向。利用低,媒体和高温发动机废热回收以供应不同的热激活节能器件。进行的优化程序的结果显示出燃料消耗的显着减少(0.1至1.9 kt / y),运营成本(高达615 k(SiC)/ y)以及关于传统系统的污染物排放。根据所考虑的创新系统布局,获得了短期回报(低于5年)。最后,提供了船舶制造商和用户的有用设计和操作标准。

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