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Longer and heavier road freight vehicles in Sweden Effects on tonne- and vehicle-kilometres, CO_2 and socio-economics

机译:瑞典更长更重的公路货运车辆对吨公里和车辆公里数,CO_2和社会经济的影响

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Purpose - The Swedish government is likely to implement longer and heavier road freight vehicles, so-called high-capacity vehicles (HCVs), in the near future. The purpose of this paper is to analysis the expected effects on the whole transport system regarding tonne-kilometres, vehicle-kilometres on road, CO_2 and socio-economics with three possible implementation strategies (HCVs on all roads, a designated road network and a designated road network with a kilometre-based truck charge) and two vehicle types (74t/25.25m and 74t/34m). Design/methodology/approach - Calculations are based on two well-established scenarios for transport development in Sweden. Changes per tonne-kilometre are modelled for ten product groups with considerations taken to their transport networks. Socio-economic effects are analysed using the net present value rating method over a 40-year period. Findings - The study shows the increase in demand for transport and the modal shift, from rail and sea to road, in terms of tonne-kilometres, vehicle-kilometres and CO_2 emissions for three implementation strategies of HCVs in two scenarios. All implementation strategies show a positive social net-benefit with the introduction of HCVs. Research limitations/implications - The results reveal potential benefits to the implementation of HCVs. The results are limited by possible over/under-estimations of effects considered in the calculations, due to uncertainties and assumptions. Practical implications - The results highlight expected levels of modal shift and induced transport for different HCV implementation strategies and how they depend on transport and climate policies and the expected growth of tonne-kilometres. Originality/value - The calculations consider socio-economic effects, particularly from increased CO_2 emissions due to modal shift and induced traffic, which is lacking in previous studies. To balance conflicting economic and environmental goals, the findings indicate that the implementation of HCVs could be accompanied by other policy measures. The findings are based on the Swedish context, but the model can be adapted to other countries or regions and to study other freight transport reforms.
机译:目的-瑞典政府可能会在不久的将来部署更长更重的公路货运车辆,即所谓的大容量车辆(HCV)。本文的目的是通过三种可能的实施策略(所有道路上的HCV,指定的道路网络和指定的HCV),分析吨公里,道路上的车辆公里,CO_2和社会经济对整个运输系统的预期影响。公路网,其中包括一公里收费的卡车)和两种车辆类型(74t / 25.25m和74t / 34m)。设计/方法/方法-计算是基于瑞典交通运输发展的两种公认方案。针对十个产品组的每吨公里变化建模,并考虑了其运输网络。使用净现值评级方法分析40年期间的社会经济影响。结果-研究显示,在两种情况下,三种HCV实施策略的吨公里,车辆公里数和CO_2排放量方面,从铁路,海运到公路的运输需求和模式转变都在增加。通过实施HCV,所有实施策略均显示出积极的社会净收益。研究的局限性/结果-结果显示了实施HCV的潜在好处。由于不确定性和假设,结果受到计算中可能考虑的过高/过低估计值的限制。实际意义-结果突出了不同HCV实施策略的预期模式转变和诱导运输水平,以及它们如何依赖于运输和气候政策以及吨公里的预期增长。原创性/价值-这些计算考虑了社会经济影响,特别是模式转换和诱导的交通导致的CO_2排放量增加,这是以前的研究所缺乏的。为了平衡相互矛盾的经济和环境目标,研究结果表明,HCV的实施可以辅之以其他政策措施。研究结果基于瑞典的情况,但是该模型可以适用于其他国家或地区并研究其他货运改革。

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