Analyzing inland waterway competitiveness with electric autonomous RoRo vessels: A case study from Rotterdam to Ghent

IF 2.4 Q3 TRANSPORTATION
Seyed Parsa Parvasi , Harilaos N. Psaraftis , Sotirios Michailidis , Kristoffer Kloch , Stefan Krause , Espen Tangstad , Odd Erik Mørkrid
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Abstract

Adopting green vehicles in the transport sector is a highly effective policy for mitigating the sector’s carbon footprint. Moreover, the EU transport policy acknowledges the pivotal role of inland waterways (IWW) in decarbonizing Europe, with a strategic objective to enhance its modal share through the transition from road to IWW. This paper investigates the potential of electric autonomous Roll-on Roll-off (RoRo) ships to enhance the competitive edge of IWW as compared to road transport. This paper examines the impact of this innovative transport system on sustainability by analyzing Key Performance Indicators (KPIs) across economic and environmental dimensions using a comparative case study approach and quantitative analysis data. The main result is that implementing electric autonomous RoRo ships can lead to a 45 % reduction in OPEX (operational expenditure), with profitability expected after about 3.5 years. Emissions decrease by more than 60 %, and by 2030, CO2 emissions in the Well-to-Wake (WTW) cycle are projected to reduce by approximately 77,000 tonnes, aligning with EU transport and environmental policies.
用电动自主滚装船分析内河航运竞争力:以鹿特丹至根特为例
在运输部门采用绿色车辆是减少该部门碳足迹的一项非常有效的政策。此外,欧盟运输政策承认内河航道(IWW)在欧洲脱碳中的关键作用,其战略目标是通过从公路向内河航道的过渡来提高其模式份额。本文研究了与公路运输相比,电动自主滚装(RoRo)船在提高IWW竞争优势方面的潜力。本文采用比较案例研究方法和定量分析数据,通过分析经济和环境维度的关键绩效指标(kpi),考察了这一创新运输系统对可持续性的影响。主要结果是,实施电动自动滚装船可以减少45%的运营支出,预计在3.5年后实现盈利。根据欧盟的运输和环境政策,到2030年,从油井到唤醒(WTW)周期的二氧化碳排放量预计将减少约77,000吨。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.00
自引率
12.00%
发文量
222
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