Overview of Global Long-Distance Road Transportation of Industrial Roundwood

IF 2.7 2区 农林科学 Q1 FORESTRY
Kalle Kärhä, Milla Seuri, Allan Bradley, Dominik Röser, Cristian Pinto, Wang Dian, Zdravko Pandur, Jiri Dvořák, Martin Torbjørn Jørgensen, Peeter Muiste, Marek Irdla, Christophe Ginet, Patricio Miguel Mac Donagh, Thomas Purfürst, Hans-Ulrich Dietz, Raffaele Spinelli, Yasushi Suzuki, Hiroaki Shirasawa, Andis Lazdiņš, Rien Visser, Campbell Harvey, Dag Skjølaas, Tadeusz Moskalik, Mauricio Acuna, Grzegorz Trzciński, Stelian Alexandru Borz, Elena Camelia Muşat, Matevž Triplat, Francois Oberholzer, Bruce Talbot, Eduardo Tolosana, Henrik von Hofsten, Anil Orhan Akay, Borys Bakay, Christian Kanzian, Joseph L. Conrad IV, Alejandro Olivera, Vladimir Petković, Renato Cesar Gonçalves Robert, Luis Henrique Suppi Costa, Rodrigo Coelho da Cruz, Tihomir Krumov
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引用次数: 0

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.
全球工业圆木长途公路运输概况
这项研究的目的是提供全球工业圆木长途公路运输的全面概述。研究的重点是不同木材卡车配置允许的最大车辆总重量(GVW)限制,木材卡车运输的典型有效载荷,工业圆木长途运输量的公路运输份额,以及工业圆木的平均长途运输距离和成本。这项研究是以问卷调查的方式进行的。该问卷于2022年2月发给欧洲工业圆木采伐量最大的30个国家以及世界上选定的主要林业国家(阿根廷、澳大利亚、巴西、加拿大、智利、中国、日本、新西兰、南非、土耳其、美国和乌拉圭)的木材运输物流专家和研究科学家,并于2022年5月截止。共有31个国家参与了这项调查。调查表明,在几乎所有被调查的国家,木材卡车运输是工业圆材的主要长途运输方式。公路运输平均占工业圆木长途运输量的89%。最常用的木材卡车配置为4至9轴,总重量限制在30吨至70吨左右。结果表明,更高的GVW限制允许木材运输中显著更高的有效载荷,最低有效载荷小于25吨,最高有效载荷大于45吨。工业圆木的平均公路运输距离为128公里,木材卡车运输的平均长途运输成本为每吨木材运输11.1欧元。在整个调查资料中,运输距离与运输成本呈正相关关系,最大GVW限值与运输成本呈反比关系。因此,为了降低运输成本,必须最大限度地增加有效载荷(在法律限制内)并尽量减少运输距离。本文讨论了在公路运输物流中提高成本和能源效率以及减少温室气体排放的几种措施。在调查的基础上,建议今后在一些国家对工业圆木的长途运输进行最新的统计数据和新颖的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.20
自引率
12.50%
发文量
23
审稿时长
>12 weeks
期刊介绍: Croatian Journal of Forest Engineering (CROJFE) is a refereed journal distributed internationally, publishing original research articles concerning forest engineering, both theoretical and empirical. The journal covers all aspects of forest engineering research, ranging from basic to applied subjects. In addition to research articles, preliminary research notes and subject reviews are published. Journal Subjects and Fields: -Harvesting systems and technologies- Forest biomass and carbon sequestration- Forest road network planning, management and construction- System organization and forest operations- IT technologies and remote sensing- Engineering in urban forestry- Vehicle/machine design and evaluation- Modelling and sustainable management- Eco-efficient technologies in forestry- Ergonomics and work safety
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