Transportation as a loosely coupled system: a fundamental challenge for sustainable freight transportation

IF 3.1 3区 工程技术 Q2 ENVIRONMENTAL STUDIES
Michael Browne , Anna Dubois , Kajsa Hulthén
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引用次数: 2

Abstract

In view of the pressing need to reduce the negative environmental impact of freight transportation we argue that it is essential to take account of the organization of the freight transportation system when considering how to address various individual activities and parts of the system. To support a transition to a more sustainable freight transportation system this paper examines the way in which different parts of the system interact and the way this can impact the scope for profound change. Taking loosely coupled systems (Weick, 1976) as a starting point, we scrutinize the couplings within and between three system layers of the freight transportation system: the supply chain layer, the transportation layer, and the infrastructure layer. In addition, we address two interfaces connecting these layers: the market for transportation services, and the traffic using the infrastructure. We find that tight couplings dominate in the supply chain and infrastructure layers and that these couplings depend on loose couplings in the transportation layer and the two interfaces. The pattern of couplings identified in the freight transportation system can explain several positive outcomes, such as flexibility and efficiency. But there are also major negative aspects of the loosely coupled nature of the system that create resistance to change and present a barrier in the drive for increased sustainability. The paper concludes that the identified couplings and system features have important implications for policies aiming to change the freight transportation system in ways that lead to significant reduction in the reliance on oil.

运输作为一个松散耦合的系统:可持续货运面临的根本挑战
摘要鉴于减少货运对环境的负面影响的迫切需要,我们认为,在考虑如何处理系统的各种单独活动和部分时,必须考虑货运系统的组织。为了支持向更可持续的货运系统过渡,本文研究了系统不同部分的相互作用方式,以及这可能影响深刻变化的范围。以松散耦合系统(Weick,1976)为起点,我们仔细研究了货运系统的三个系统层内部和之间的耦合:供应链层、运输层和基础设施层。此外,我们还解决了连接这些层的两个接口:运输服务市场和使用基础设施的交通。我们发现,紧密耦合在供应链和基础设施层中占主导地位,这些耦合取决于运输层和两个接口中的松散耦合。货运系统中确定的耦合模式可以解释几个积极的结果,如灵活性和效率。但该系统的松散耦合性质也有一些主要的负面方面,这些方面对变革产生了阻力,并在提高可持续性的动力中形成了障碍。论文的结论是,所确定的耦合和系统特征对旨在改变货运系统的政策具有重要意义,从而显著减少对石油的依赖。
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来源期刊
CiteScore
8.90
自引率
2.60%
发文量
56
期刊介绍: The International Journal of Sustainable Transportation provides a discussion forum for the exchange of new and innovative ideas on sustainable transportation research in the context of environmental, economical, social, and engineering aspects, as well as current and future interactions of transportation systems and other urban subsystems. The scope includes the examination of overall sustainability of any transportation system, including its infrastructure, vehicle, operation, and maintenance; the integration of social science disciplines, engineering, and information technology with transportation; the understanding of the comparative aspects of different transportation systems from a global perspective; qualitative and quantitative transportation studies; and case studies, surveys, and expository papers in an international or local context. Equal emphasis is placed on the problems of sustainable transportation that are associated with passenger and freight transportation modes in both industrialized and non-industrialized areas. All submitted manuscripts are subject to initial evaluation by the Editors and, if found suitable for further consideration, to peer review by independent, anonymous expert reviewers. All peer review is single-blind. Submissions are made online via ScholarOne Manuscripts.
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