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Systemic Analysis of the Soccer (Football) Value Chain: Learning from the Brazilian Context

Author

Listed:
  • Rosiane Serrano

    (Federal Institute of Education, Science and Technology of the Rio Grande do Sul
    Universidade do Vale do Rio dos Sinos-UNISINOS)

  • Daniel Pacheco Lacerda

    (Universidade do Vale do Rio dos Sinos-UNISINOS)

  • Ricardo Augusto Cassel

    (Universidade Federal do Rio Grande do Sul – UFRGS)

  • Luis Henrique Rodrigues

    (Instituto de Estudos Sistêmicos do Brasil- IESB)

  • Priscila Ferraz Soares

    (Immunobiologicals’ Technology Graduate Program, Instituto de Tecnologia em Imunobiológicos – Bio-Manguinhos)

Abstract

Soccer (football) is identified as the most popular sport in the world with a high turnover of economic-financial resources. The different segments of the soccer (football) value chain exert mutual influence on the variables that rule the dynamics of this sector. In this sense it is necessary to identify the variables that represent the soccer (football) value chain systemically; to understand the interrelationships between these variables, the main difficulties derived from this interrelationship and to point out variables that require actions to increment the results of the soccer (football) value chain as a whole. Hence, this study applied a semi-structured questionnaire with open-ended questions about the problems and leveraging variables that exist in this sports modality. A causal linkage diagram was elaborated based on the answers to the interviews, showing the systemic structure of the soccer (football) value chain in Brazil, whose premise it is to identify the existing circularities and the possibly existing points of leverage. The systemic structure pointed to the economic participation of soccer (football) in the Gross Domestic Product as a central variable to be leveraged, which tends to synthetize the results of the joint action of the actors in this chain. Furthermore, the variables that may limit or amplify the growth were identified. The systemic structure showed that the soccer (football) commodity chain is complex because of the great number of variables and interrelationships needed to represent its dynamics. The relationship between the actors also proved to be a factor of impact on economic and social development.

Suggested Citation

  • Rosiane Serrano & Daniel Pacheco Lacerda & Ricardo Augusto Cassel & Luis Henrique Rodrigues & Priscila Ferraz Soares, 2018. "Systemic Analysis of the Soccer (Football) Value Chain: Learning from the Brazilian Context," Systemic Practice and Action Research, Springer, vol. 31(3), pages 269-291, June.
  • Handle: RePEc:spr:syspar:v:31:y:2018:i:3:d:10.1007_s11213-017-9425-8
    DOI: 10.1007/s11213-017-9425-8
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    References listed on IDEAS

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    1. Rachel Freeman & Mike Yearworth & Chris Preist, 2016. "Revisiting Jevons’ Paradox with System Dynamics: Systemic Causes and Potential Cures," Journal of Industrial Ecology, Yale University, vol. 20(2), pages 341-353, April.
    2. Vaccaro, Guilherme Luís Roehe & Pohlmann, Christopher & Lima, André Cirne & dos Santos, Manoela Silveira & de Souza, Cristina Botti & Azevedo, Debora, 2010. "Prospective scenarios for the biodiesel chain of a Brazilian state," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(4), pages 1263-1272, May.
    3. Mingers, John & White, Leroy, 2010. "A review of the recent contribution of systems thinking to operational research and management science," European Journal of Operational Research, Elsevier, vol. 207(3), pages 1147-1161, December.
    4. Oecd, 2009. "Climate Change and Africa," OECD Journal: General Papers, OECD Publishing, vol. 2009(1), pages 5-35.
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