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Infrastructure Design for Automated Container Stacking Area

机译:集装箱自动堆垛区基础设施设计

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The volume of maritime trade transferred by container is continuously increasing. Due to the scarcity of storage space, the need for higher container storage capacity, and the demands for faster and more efficient operations, container terminal operators are moving from conventional operations toward semi and fully automated operations. With this change, engineers are faced with new challenges when designing terminal infrastructure. The container storage area is the largest and one of the most important areas within an automated container terminal. Infrastructure design of this area is critical for operational efficiency of the terminal. Critical infrastructure design elements within the automated container stacking area include Automated Stacking Crane (ASC) rails, ASC rail foundations, container stacking support systems, and storm drainage systems. ASC rails can be supported by concrete beam on grade, concrete beam on piles, or by concrete ties on ballast. The choice of rail foundation depends on various factors such as the initial cost, maintenance costs, impacts to terminal operations due to maintenance activities, and other site-specific conditions. Critical infrastructure design elements within the automated container stacking area include ASC rails, ASC rail foundations, container stacking support systems, and storm drainage systems. This paper addresses design considerations for these elements. These considerations will be supported by design experience on several domestic and international projects.
机译:集装箱运输的海上贸易量不断增加。由于存储空间的稀缺,对更高的集装箱存储容量的需求以及对更快,更高效的操作的需求,集装箱码头操作员正从常规操作向半自动化操作转变。随着这一变化,工程师在设计终端基础架构时面临着新的挑战。集装箱存储区是自动集装箱码头内最大,最重要的区域之一。该区域的基础架构设计对于终端的运营效率至关重要。自动化集装箱堆放区中的关键基础设施设计元素包括自动堆垛起重机(ASC)导轨,ASC铁路地基,集装箱堆垛支撑系统和雨水排放系统。 ASC导轨可以由坡度上的混凝土梁,桩上的混凝土梁或压载物上的混凝土扎带支撑。铁路基础的选择取决于各种因素,例如初始成本,维护成本,维护活动对终端运营的影响以及其他特定地点的条件。自动化集装箱堆放区内关键的基础设施设计元素包括ASC导轨,ASC铁路基础,集装箱堆放支撑系统和暴雨排水系统。本文介绍了这些元素的设计注意事项。这些考虑将得到一些国内外项目的设计经验的支持。

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