Overview of Global Long-Distance Road Transportation of Industrial Roundwood

Author:

Kärhä Kalle1,Seuri Milla1,Bradley Allan2,Röser Dominik3,Pinto Cristian4,Dian Wang5,Pandur Zdravko6,Dvořák Jiri7,Torbjørn Jørgensen Martin8,Muiste Peeter9,Irdla Marek9,Ginet Christophe10,Mac Donagh Patricio Miguel11,Purfürst Thomas12,Dietz Hans-Ulrich12,Spinelli Raffaele13,Suzuki Yasushi14,Shirasawa Hiroaki15,Lazdiņš Andis16,Visser Rien17,Harvey Campbell17,Skjølaas Dag18,Moskalik Tadeusz19,Acuna Mauricio20,Trzciński Grzegorz19,Borz Stelian Alexandru21,Muşat Elena Camelia21,Triplat Matevž22,Oberholzer Francois23,Talbot Bruce24,Tolosana Eduardo25,von Hofsten Henrik26,Akay Anil Orhan27,Bakay Borys28,Kanzian Christian29,Conrad IV Joseph L.30,Olivera Alejandro31,Petković Vladimir32,Gonçalves Robert Renato Cesar33,Suppi Costa Luis Henrique34,Coelho da Cruz Rodrigo34,Krumov Tihomir35

Affiliation:

1. School of Forest Sciences, University of Eastern Finland

2. FPInnovations

3. University of British Columbia, Department of Forest Resources Management, Forest Sciences Centre 2036

4. Forestal Arauco

5. Beijing Forestry University, College of Technology

6. University of Zagreb, Faculty of forestry and wood technology, Department of forest engineering

7. Czech University of Life Sciences Prague, Faculty of Forestry and Wood Sciences, Department of Forestry Technologies and Construction

8. University of Copenhagen, Skovskolen Nødebo

9. Estonian University of Life Sciences

10. FCBA

11. Faculty of Forest Sciences, Misiones National University

12. University of Freiburg

13. CNR IBE

14. Kochi University, Faculty of Agriculture and Marine Science

15. Forestry and Forest Products Research Institute

16. Latvian State Forest Research Institute "Silava"

17. University of Canterbury, Faculty of Engineering, School of Forestry

18. Norwegian Forest Owners Federation

19. Warsaw University of Life Sciences – SGGW, Institute of Forest Sciences, Department of Forest Utilization

20. Forest Industries Research Institute, University of the Sunshine Coast

21. Transilvania University of Brasov, Faculty of Silviculture and Forest Engineering, Department of Forest Engineering, Forest Management Planning and Terrestrial Measurements

22. Slovenian Forestry Institute, Department for forest technique and economics

23. Forestry South Africa

24. Department of Forest and Wood Product Science, Faculty of Agrisciences, Stellenbosch University

25. E.T.S.I. Montes, Forestal y del Medio Natural, Universidad Politécnica de Madrid (U.P.M.)

26. Skogforsk, Uppsala Science Park

27. Istanbul University-Cerrahpaşa, Faculty of Forestry, Department of Forest Construction and Transportation

28. Ukrainian National Forestry University, Department of Forest Engineering

29. Department of Forest and Soil Sciences, Institute of Forest Engineering, University of Natural Resources and Life Sciences Vienna

30. University of Georgia, Harley Langdale Jr. Center for Forest Business, Warnell School of Forestry and Natural Resources

31. University of the Republic Uruguay, Tacuarembó University Centre

32. University of Banja Luka, Faculty of Forestry

33. Department of Forest Engineering and Technology, Federal University of Paraná

34. Klabin S.A., State Capital of São Paulo

35. Department of Technologies and Mechanization in Forestry, Faculty of Forestry, University of Forestry

Abstract

The aim of the study was to provide a comprehensive overview of global long-distance road transportation of industrial roundwood. The study focused on the maximum gross vehicle weight (GVW) limits allowed with different timber truck configurations, typical payloads in timber trucking, the road transportation share of the total industrial roundwood long-distance transportation volume, and the average long-distance transportation distances and costs of industrial roundwood. The study was carried out as a questionnaire survey. The questionnaire was sent to timber transportation logistics experts and research scientists in the 30 countries with the largest industrial roundwood removals in Europe, as well as selected major forestry countries in the world (Argentina, Australia, Brazil, Canada, Chile, China, Japan, New Zealand, South Africa, Türkiye, the United States of America and Uruguay) in February 2022, and closed in May 2022. A total of 31 countries took part in the survey. The survey illustrated that timber trucking was the main long-distance transportation method of industrial roundwood in almost every country surveyed. Road transportation averaged 89% of the total industrial roundwood long-distance transportation volume. Timber truck configurations of 4 to 9 axles with GVW limits of around 30 tonnes to over 70 tonnes were most commonly used. The results indicated that higher GVW limits allowed significantly higher payloads in timber trucking, with the lowest payloads at less than 25 tonnes, and the highest payloads more than 45 tonnes. The average road transportation distance with industrial roundwood was 128 km, and the average long-distance transportation cost in timber trucking was €11.1 per tonne of timber transported. In the entire survey material, there was a direct relationship between transportation distance and transportation costs and an inverse relationship between maximum GVW limits and transportation costs. Consequently, in order to reduce transportation costs, it is essential to maximise payloads (within legal limits) and minimise haul distances. Several measures to increase cost- and energy-efficiency, and to reduce greenhouse gas emissions in road transportation logistics, are discussed in the paper. On the basis of the survey, it is recommended that up-to-date statistical data and novel research studies on the long-distance transportation of industrial roundwood be conducted in some countries in the future.

Publisher

Faculty of Forestry, University of Zagreb

Subject

Forestry

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