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Evolving structure of the maritime trade network: evidence from the Lloyd’s Shipping Index (1890–2000)

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  • Zuzanna Kosowska-Stamirowska

    (UMR 8504 Géographie-cités, Université Paris 1 Panthéon-Sorbonne)

  • César Ducruet

    (UMR 8504 Géographie-cités, Université Paris 1 Panthéon-Sorbonne)

  • Nishant Rai

    (IIT Kanpur)

Abstract

Over 90 % of the world trade volumes is being carried by sea nowadays. This figure shows the massive importance of the maritime trade routes for the world economy. However, the evolution of their structure over time is a white spot in the modern literature. In this paper we characterise and study topological changes of the maritime trade network and how they translate into navigability properties of this network. In order to do so we use tools from Graph Theory and Computer Science to describe the maritime trade network at different points in time between 1890 and 2000, based on the data on daily movements of ships. We also propose two new measures of network navigability based on a random walk procedure: random walk discovery and escape difficulty. By studying the maritime network evolution we find that it optimizes over time, increasing its navigability while doubling the number of active ports. Our findings suggest that unlike in other real world evolving networks studied in the literature up to date, the maritime network does not densify over time and its effective diameter remains constant.

Suggested Citation

  • Zuzanna Kosowska-Stamirowska & César Ducruet & Nishant Rai, 2016. "Evolving structure of the maritime trade network: evidence from the Lloyd’s Shipping Index (1890–2000)," Journal of Shipping and Trade, Springer, vol. 1(1), pages 1-17, December.
  • Handle: RePEc:spr:josatr:v:1:y:2016:i:1:d:10.1186_s41072-016-0013-3
    DOI: 10.1186/s41072-016-0013-3
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    References listed on IDEAS

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    1. Bernhofen, Daniel M. & El-Sahli, Zouheir & Kneller, Richard, 2016. "Estimating the effects of the container revolution on world trade," Journal of International Economics, Elsevier, vol. 98(C), pages 36-50.
    2. Pais Montes, Carlos & Freire Seoane, Maria Jesus & González Laxe, Fernando, 2012. "General cargo and containership emergent routes: A complex networks description," Transport Policy, Elsevier, vol. 24(C), pages 126-140.
    3. Xu, Mengqiao & Li, Zhenfu & Shi, Yanlei & Zhang, Xiaoling & Jiang, Shufei, 2015. "Evolution of regional inequality in the global shipping network," Journal of Transport Geography, Elsevier, vol. 44(C), pages 1-12.
    4. Tovar, Beatriz & Hernández, Rubén & Rodríguez-Déniz, Héctor, 2015. "Container port competitiveness and connectivity: The Canary Islands main ports case," Transport Policy, Elsevier, vol. 38(C), pages 40-51.
    5. Hu, Yihong & Zhu, Daoli, 2009. "Empirical analysis of the worldwide maritime transportation network," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 388(10), pages 2061-2071.
    6. Tavasszy, Lóránt & Minderhoud, Michiel & Perrin, Jean-François & Notteboom, Theo, 2011. "A strategic network choice model for global container flows: specification, estimation and application," Journal of Transport Geography, Elsevier, vol. 19(6), pages 1163-1172.
    7. César Ducruet & Theo E. Notteboom, 2012. "The worldwide maritime network of container shipping: Spatial structure and regional dynamics," Post-Print halshs-00538051, HAL.
    8. Ducruet, César, 2013. "Network diversity and maritime flows," Journal of Transport Geography, Elsevier, vol. 30(C), pages 77-88.
    9. César Ducruet & Theo Notteboom, 2012. "The worldwide maritime network of container shipping : Spatial structure and regional dynamics," Post-Print hal-03246962, HAL.
    10. González Laxe, Fernando & Jesus Freire Seoane, Maria & Pais Montes, Carlos, 2012. "Maritime degree, centrality and vulnerability: port hierarchies and emerging areas in containerized transport (2008–2010)," Journal of Transport Geography, Elsevier, vol. 24(C), pages 33-44.
    11. César Ducruet, 2013. "Network diversity and maritime flows," Post-Print hal-03246957, HAL.
    12. Wang, Chengjin & Wang, Jiaoe, 2011. "Spatial pattern of the global shipping network and its hub-and-spoke system," Research in Transportation Economics, Elsevier, vol. 32(1), pages 54-63.
    13. César Ducruet, 2015. "Maritime Networks. Spatial Structures and Time Dynamics," Post-Print hal-03246485, HAL.
    14. César Ducruet, 2013. "Network diversity and maritime flows," Post-Print halshs-00815731, HAL.
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    Cited by:

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    2. Tocchi, Daniela & Sys, Christa & Papola, Andrea & Tinessa, Fiore & Simonelli, Fulvio & Marzano, Vittorio, 2022. "Hypergraph-based centrality metrics for maritime container service networks: A worldwide application," Journal of Transport Geography, Elsevier, vol. 98(C).
    3. Marco Fugazza & Jan Hoffmann, 2017. "Liner shipping connectivity as determinant of trade," Journal of Shipping and Trade, Springer, vol. 2(1), pages 1-18, December.
    4. Jan Hoffmann & Gordon Wilmsmeier & Y.H. Venus Lun, 2017. "Connecting the world through global shipping networks," Journal of Shipping and Trade, Springer, vol. 2(1), pages 1-4, December.
    5. Nicanor García Álvarez & Belarmino Adenso-Díaz & Laura Calzada-Infante, 2021. "Maritime Traffic as a Complex Network: a Systematic Review," Networks and Spatial Economics, Springer, vol. 21(2), pages 387-417, June.

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