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An optimization approach to design forest road networks and plan timber transportation

Author

Listed:
  • Marta Mesquita

    (Universidade de Lisboa
    Universidade de Lisboa)

  • Susete Marques

    (Centro de Estudos Florestais and Laboratory TERRA
    Universidade de Lisboa)

  • Marlene Marques

    (Centro de Estudos Florestais and Laboratory TERRA
    Universidade de Lisboa)

  • Marco Marto

    (Centro de Estudos Florestais and Laboratory TERRA
    Universidade de Lisboa)

  • Miguel Constantino

    (Universidade de Lisboa
    Universidade de Lisboa)

  • José G. Borges

    (Centro de Estudos Florestais and Laboratory TERRA
    Universidade de Lisboa)

Abstract

The provision of ecosystem services depends on the landscape-level distribution of forest management options over extended planning horizons. Nevertheless, transportation costs are an important fraction of total procurement costs. Therefore, forest managers are challenged by the need to make decisions regarding the design of the road network needed to have access to forest management units (e.g., stands) as well as the transportation of forest products over this network. The objective of this research is to develop an approach to integrate the design and maintenance of a forest roads’ network and to provide solutions to the timber loading location site and the timber transportation problems. The emphasis is on the combination of mathematical programming formulations and heuristic solution techniques to minimize the sum of road building, road maintenance, timber loading and transportation costs. Specifically, a mixed integer programming model is built to represent the problem while a heuristic algorithm, based on a Graph Simplification procedure and a big-M Estimation procedure, is proposed to solve the underlying optimization problem. Results from an application to a large-scale forest management problem in Northwest Portugal involving 1137 management units are discussed. Results suggest that this approach may help address efficiently the need by forest managers to integrate road design, road maintenance, timber loading location and transportation concerns.

Suggested Citation

  • Marta Mesquita & Susete Marques & Marlene Marques & Marco Marto & Miguel Constantino & José G. Borges, 2022. "An optimization approach to design forest road networks and plan timber transportation," Operational Research, Springer, vol. 22(3), pages 2973-3001, July.
  • Handle: RePEc:spr:operea:v:22:y:2022:i:3:d:10.1007_s12351-021-00640-7
    DOI: 10.1007/s12351-021-00640-7
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    References listed on IDEAS

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    1. Rafael Epstein & Andrés Weintraub & Pedro Sapunar & Enrique Nieto & Julian B. Sessions & John Sessions & Fernando Bustamante & Hugo Musante, 2006. "A Combinatorial Heuristic Approach for Solving Real-Size Machinery Location and Road Design Problems in Forestry Planning," Operations Research, INFORMS, vol. 54(6), pages 1017-1027, December.
    2. Guignard, Monique & Ryu, Choonho & Spielberg, Kurt, 1998. "Model tightening for integrated timber harvest and transportation planning," European Journal of Operational Research, Elsevier, vol. 111(3), pages 448-460, December.
    3. Kai L. Ross & Sándor F. Tóth & Weikko S. Jaross, 2018. "Forest Harvest Scheduling with Endogenous Road Costs," Interfaces, INFORMS, vol. 48(3), pages 260-270, June.
    4. Andres Weintraub & Daniel Navon, 1976. "A Forest Management Planning Model Integrating Silvicultural and Transportation Activities," Management Science, INFORMS, vol. 22(12), pages 1299-1309, August.
    5. Legues, Andres Diaz & Ferland, Jacques A. & Ribeiro, Celso C. & Vera, Jorge R. & Weintraub, Andres, 2007. "A tabu search approach for solving a difficult forest harvesting machine location problem," European Journal of Operational Research, Elsevier, vol. 179(3), pages 788-805, June.
    6. Leo Bont & Hans Heinimann & Richard Church, 2015. "Concurrent optimization of harvesting and road network layouts under steep terrain," Annals of Operations Research, Springer, vol. 232(1), pages 41-64, September.
    7. Martell, David L. & Gunn, Eldon A. & Weintraub, Andres, 1998. "Forest management challenges for operational researchers," European Journal of Operational Research, Elsevier, vol. 104(1), pages 1-17, January.
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