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Improving Cost-Efficiency and Reducing Environmental Impacts of Intermodal Transportation with Dry Port Concept – Major Rail Transport Corridor in Baltic Sea Region

机译:陆港概念提高波罗的海地区主要铁路运输走廊的成本效益并减少多式联运对环境的影响

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摘要

Transportation plays a major role in the gross domestic product of various nations. There are, however, many obstacles hindering the transportation sector. Cost-efficiency along with proper delivery times, high frequency and reliability are not a straightforward task. Furthermore, environmental friendliness has increased the importance of the whole transportation sector. This development will change roles inside the transportation sector. Even now, but especially in the future, decisions regarding the transportation sector will be partly based on emission levels and other externalities originating from transportation in addition to pure transportation costs. There are different factors, which could have an impact on the transportation sector. IMO’s sulphur regulation is estimated to increase the costs of short sea shipping in the Baltic Sea. Price development of energy could change the roles of different transport modes. Higher awareness of the environmental impacts originating from transportation could also have an impact on the price level of more polluting transport modes. According to earlier research, increased inland transportation, modal shift and slowsteaming can be possible results of these changes in the transportation sector. Possible changes in the transportation sector and ways to settle potential obstacles are studied in this dissertation. Furthermore, means to improve cost-efficiency and to decrease environmental impacts originating from transportation are researched. Hypothetical Finnish dry port network and Rail Baltica transport corridor are studied in this dissertation. Benefits and disadvantages are studied with different methodologies. These include gravitational models, which were optimized with linear integer programming, discrete-event and system dynamics simulation, an interview study and a case study. Geographical focus is on the Baltic Sea Region, but the results can be adapted to other geographical locations with discretion. Results indicate that the dry port concept has benefits, but optimization regarding the location and the amount of dry ports plays an important role. In addition, the utilization of dry ports for freight transportation should be carefully operated, since only a certain amount of total freight volume can be cost-efficiently transported through dry ports. If dry ports are created and located without proper planning, they could actually increase transportation costs and delivery times of the whole transportation system. With an optimized dry port network, transportation costs can be lowered in Finland with three to five dry ports. Environmental impacts can be lowered with up to nine dry ports. If more dry ports are added to the system, the benefits become very minor, i.e. payback time of investments becomes extremely long. Furthermore, dry port network could support major transport corridors such as Rail Baltica. Based on an analysis of statistics and interview study, there could be enough freight volume available for Rail Baltica, especially, if North-West Russia is part of the Northern end of the corridor. Transit traffic to and from Russia (especially through the Baltic States) plays a large role. It could be possible to increase transit traffic through Finland by connecting the potential Finnish dry port network and the studied transport corridor. Additionally, sulphur emission regulation is assumed to increase the attractiveness of Rail Baltica in the year 2015. Part of the transit traffic could be rerouted along Rail Baltica instead of the Baltic Sea, since the price level of sea transport could increase due to the sulphur regulation. Both, the hypothetical Finnish dry port network and Rail Baltica transport corridor could benefit each other. The dry port network could gain more market share from Russia, but also from Central Europe, which is the other end of Rail Baltica. In addition, further Eastern countries could also be connected to achieve higher potential freight volume by rail.
机译:运输在各国的国内生产总值中起着重要作用。但是,有许多阻碍运输部门的障碍。具有成本效益以及适当的交付时间,高频和可靠性并非易事。此外,环境友好性提高了整个运输部门的重要性。这一发展将改变运输部门内部的作用。即使是现在,尤其是在将来,有关运输部门的决定将部分基于排放水平以及除纯运输成本之外的其他运输来源。有多种因素可能会对运输部门产生影响。估计IMO的硫磺法规会增加波罗的海短途海运的成本。能源价格上涨可能会改变不同运输方式的作用。对源自运输的环境影响的更高认识也可能对污染更大的运输方式的价格水平产生影响。根据较早的研究,内陆运输的增加,运输方式的转变和蒸汽吞吐的缓慢可能是运输部门这些变化的结果。本文研究了交通运输业可能发生的变化以及解决潜在障碍的方法。此外,研究了提高成本效益并减少运输带来的环境影响的手段。本文以虚拟的芬兰陆港网络和波罗的海铁路运输走廊为研究对象。用不同的方法研究了利弊。其中包括重力模型,该模型已通过线性整数编程,离散事件和系统动力学模拟,访谈研究和案例研究进行了优化。地理重点放在波罗的海地区,但结果可以酌情调整到其他地理位置。结果表明,陆港概念是有好处的,但是关于陆港的位置和数量的优化起着重要作用。此外,应谨慎操作将陆港用于货运的做法,因为通过陆港只能有效地运输一定数量的总货运量。如果在没有适当计划的情况下创建和放置陆港,它们实际上会增加整个运输系统的运输成本和交货时间。通过优化的陆港网络,在芬兰拥有3至5个陆港可以降低运输成本。多达9个陆港可以降低对环境的影响。如果将更多的陆港添加到系统中,则收益将变得非常微不足道,即投资的投资回收期将变得非常长。此外,陆港网络可以支持主要的运输走廊,例如波罗的海铁路。根据统计分析和访谈研究,波罗的海铁路可能有足够的货运量,特别是如果俄罗斯西北部是走廊北端的一部分。往返俄罗斯(特别是通过波罗的海国家)的过境交通起着重要作用。通过连接潜在的芬兰陆港网络和已研究的运输走廊,有可能增加通过芬兰的过境交通量。此外,假设硫磺排放法规将在2015年提高波罗的海铁路的吸引力。由于硫磺法规,海上运输的价格水平可能会提高,部分运输业务可能会沿着波罗的海铁路而不是波罗的海改道。假设的芬兰陆港网络和波罗的海铁路运输走廊都可以互惠互利。陆港网络可以从俄罗斯获得更多的市场份额,也可以从中欧铁路(波罗的海铁路的另一端)获得更多的市场份额。此外,还可以连接更多的东方国家,以通过铁路实现更高的潜在货运量。

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    Henttu Ville;

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