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Joint planning for yard storage space and home berths in container terminals

机译:联合规划集装箱码头的堆场存储空间和家庭泊位

摘要

Yard planning is essential for efficient operations in container terminals, especially for ports with limited storage space. To improve the utilisation of space and the efficiency of container handling in a terminal, operators require flexible yard space planning strategies to manage job workloads and yard-to-berth transportation costs. In previous studies, the inter-related decision making process for berths and yards has normally been studied separately, and yard planning models are designed with deterministic inputs of berths, where many existing terminals are operating with sub-optimal efficiency. In this paper, we consider different policies of the scattered stacking strategy for export containers and analyse the entire cycle of container handling from yard block to home berth, where the home berth is a quay section which includes the preferred berthing place of a vessel upon its arrival. We analyse three stacking policies, namely exclusive, cross-area, and buffer-area stacking policies, and formulate the planning problem for yard storage and related home berths into MILP (mixed integer linear programming) models. Solutions are obtained with a two-stage approach method. The numerical analysis demonstrates that the workload imbalance can be significantly reduced by implementing either the cross-area or buffer-area container stacking policy.
机译:堆场规划对于集装箱码头的高效运营至关重要,尤其是对于存储空间有限的港口。为了提高码头的空间利用率和集装箱装卸效率,运营商需要灵活的院子空间规划策略来管理工作量和院子到泊位的运输成本。在以前的研究中,通常会单独研究泊位和船坞的相互关联的决策过程,并且使用确定性的泊位输入设计船场规划模型,其中许多现有码头的运行效率都不理想。在本文中,我们考虑了出口集装箱分散堆放策略的不同政策,并分析了从堆场区到家庭泊位的整个集装箱搬运过程,其中家庭泊位是一个码头区域,其中包括船舶在其首选泊位上的位置到达。我们分析了三种堆叠策略,即排他性,跨区域和缓冲区区域的堆叠策略,并将院子存储和相关家庭泊位的规划问题表述为MILP(混合整数线性规划)模型。解决方案通过两步法获得。数值分析表明,通过实施跨区域或缓冲区域容器堆叠策略,可以显着减少工作负载不平衡。

著录项

  • 作者

    Li MK; Yip TL;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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