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首页> 外文期刊>Scandinavian Journal of Forest Research >Minimizing driving times and greenhouse gas emissions in timber transport with a near-exact solution approach.
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Minimizing driving times and greenhouse gas emissions in timber transport with a near-exact solution approach.

机译:采用近乎精确的解决方案,最大限度地减少木材运输中的开车时间和温室气体排放。

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摘要

Efficient transport of timber for supplying industrial conversion and biomass power plants is a crucial factor for competitiveness in the forest industry. Throughout the recent years minimizing driving times has been the main focus of optimizations in this field. In addition to this aim the objective of reducing environmental impacts, represented by carbon dioxide equivalent (CO2e) emissions, is discussed. The underlying problem is formulated as a multi-depot vehicle routing problem with pickup and delivery and time windows (MDVRPPDTW) and a new iterative solution method is proposed. For the numerical studies, real-life data are used to generate test instances of different scales concerning the supply chain of biomass power plants. Small ones are taken to validate the optimality of the new approach. Medium and large test instances are solved with respect to minimizing driving times and fuel consumptions separately. This study shows that the selection of the objective of minimizing fuel consumption leads to a significant reduction of CO2e emissions compared to a minimization of driving times.
机译:为工业转化和生物质能发电厂供应木材的有效运输是林业竞争力的关键因素。在最近几年中,最小化行驶时间一直是该领域优化的主要重点。除此目标外,还讨论了以二氧化碳当量(CO 2 e)表示的减少环境影响的目标。潜在的问题被公式化为具有接送和时间窗(MDVRPPDTW)的多站点车辆路径问题,并提出了一种新的迭代求解方法。对于数值研究,使用现实生活中的数据来生成有关生物质发电厂供应链的不同规模的测试实例。采取小方法来验证新方法的最优性。解决了中型和大型测试实例,分别减少了行驶时间和燃料消耗。这项研究表明,与最小化驾驶时间相比,选择最小化油耗的目标可以显着减少CO 2 的排放。

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