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The Role of Railroads in Multimodal Woody Biomass Transportation in Michigan

机译:铁路在密歇根州多式联运木质生物量运输中的作用

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Minimizing transportation costs is essential in the forest products industry, as the relatively low value and high weight of the products causes transportation to account for exceptionally high portion of the overall cost. The forest products such as logs, chips, and residues (woody biomass) are one of the major business sources in Michigan especially in Upper Peninsula of Michigan. Currently, truck transportation is used for the great majority of the trips, but it is believed that a more cost-efficient transportation chain might be achieved through use of multimodal approach by trucks and rail and in some cases water transportation.This paper presents the three alternative transportation supply chain models for woody biomass transportation; 1) single mode, 2) multimodal and 3) intermediate storage. The paper uses data from three recent studies to describe the forest products transportation in the upper mid-west, including the typical distances for movements and the breakdown of cost elements for each alternative. It will discuss the potential benefits of increased use of rail as part of the transportation chain and address the perceived drawbacks and challenges caused by the shift. It will also present cost-gradient maps developed to highlight the capability of rail to expand the economical radius for obtaining feedstock and demonstrate how increasing fuel prices change the balance toward multimodal transportation. Finally, the paper will highlight the potential for gained efficiency in log truck operations through increased use of rail.
机译:最小化运输成本在森林产品行业中至关重要,因为产品的相对较低的价值和高重量导致运输,以考虑整体成本的异常高部分。日志,筹码和残留物(木质生物量)等森林产品是密歇根州的主要业务资源之一,特别是在密歇根州的上半岛。目前,卡车运输用于大多数旅行,但据信可以通过使用卡车和铁路的多式联算方法以及在一些情况下水运输来实现更具成本效益的运输链。这篇论文呈现了三个木质生物质运输的替代运输供应链模型; 1)单模,2)多模式和3)中间存储。本文采用来自三项研究的数据来描述上部中西部的森林产品运输,包括典型的运动距离和每种替代方案的成本元素的故障。它将讨论随着运输链的一部分增加利用轨道的潜在好处,并解决了转变引起的感知缺点和挑战。它还将提出开发的成本梯度图,以突出导轨的能力,以扩大获得原料的经济半径,并展示燃料价格提高如何变化对多式联运的平衡。最后,本文将突出通过增加轨道的利用卡车操作中获得效率的潜力。

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