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Design and Operation of Autonomous Underground Freight Transportation Systems

机译:自主地下货运系统的设计与运行

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Despite the increases in freight transportation demand, options for increasing capacity of the overground freight transportation infrastructure system are limited. This paper investigated the design and operation of an underground freight transportation (UFT) system that uses space below highways. Underground freight transportation is a class of automated transportation system in which individual vehicles carry freight through tunnels and pipelines between intermodal terminals. This paper presents attributes for schematic designs and operations for two UFT scenarios: a long-haul system which transports standard shipping containers between the Port of Houston and a terminal near Dallas, and a short-haul system which carries pallet-size freight between the Port of Houston and a satellite terminal near Houston. The appropriate design details were determined by the size of the freight, the types of vehicles and tunnels, and the propulsion system. In addition, operational attributes such as operating speed, headway, line capacity, and associated fleet sizes were addressed. Design sketches and operational equations presented in this paper are generally independent of the freight sizes and route lengths and this case study can be used as guidance for the design and operation of other freight tunnels and pipelines. (C) 2019 American Society of Civil Engineers.
机译:尽管货运需求增加,但是用于增加地面货运基础设施系统容量的选择仍然有限。本文研究了利用高速公路下方空间的地下货物运输(UFT)系统的设计和运行。地下货物运输是一类自动化运输系统,其中,各个车辆通过联运码头之间的隧道和管道运输货物。本文介绍了两种UFT方案的原理图设计和操作的属性:一种用于在休斯顿港口和达拉斯附近的码头之间运输标准船运集装箱的长途系统,以及一种用于在港口之间运送托盘大小的货物的短途系统休斯顿和休斯顿附近的卫星航站楼。适当的设计细节由货运量,车辆和隧道的类型以及推进系统确定。此外,还解决了诸如运行速度,前进距离,生产能力和相关车队规模之类的运营属性。本文介绍的设计草图和操作方程式通常与货运量和路线长度无关,该案例研究可作为其他货运隧道和管道设计和运行的指南。 (C)2019美国土木工程师学会。

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