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Energy and economic performance of the FARWIND energy system for sustainable fuel production from the far-offshore wind energy resource

机译:FARWIND能源系统的能源和经济绩效,可利用远洋风能资源实现可持续燃料生产

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Since 2016, Ecole Centrale de Nantes has been investigating a radically new technology for conversion of the far-offshore wind energy into sustainable fuel, called the FARWIND energy system. It relies on mobile wind energy converters (energy ships) that are not grid-connected. Thus, the converters include on-board powerto-X plants for storage of the produced energy. In [16], we investigated the feasibility of hydrogen as the energy vector. It was found to be challenging because of high transportation and distribution cost due to the low volumetric energy density of hydrogen for standard conditions of temperature and pressure. In this paper, we first investigate other options which include synthetic natural gas, methanol, Fischer-Tropsch fuel and ammonia. Comparison of those options indicates that methanol is the most promising option. Then, net energy efficiency and cost of FARWIND-produced methanol is estimated. Despite the fact that the net energy efficiency is found to be smaller than for the hydrogen solution, it is shown that the methanol cost could be competitive for the transportation fuel market on the medium to long term.
机译:自2016年以来,南特中央大学一直在研究一种将离岸风能转化为可持续燃料的全新技术,称为FARWIND能源系统。它依赖于未并网的移动式风能转换器(能源船)。因此,转换器包括用于存储产生的能量的车载powerto-X工厂。在[16]中,我们研究了氢作为能量矢量的可行性。由于在标准温度和压力条件下氢气的体积能量密度低,由于运输和分配成本高昂,这被认为具有挑战性。在本文中,我们首先研究其他选项,包括合成天然气,甲醇,费-托燃料和氨气。这些选择的比较表明,甲醇是最有前途的选择。然后,估算了FARWIND生产的甲醇的净能源效率和成本。尽管发现净能量效率比氢气溶液要低,但事实证明,从中长期来看,甲醇成本对于运输燃料市场而言可能具有竞争力。

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