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Port capacity forecasting and the impact of the dredging works on port sea operations using discrete event simulation

机译:使用离散事件模拟的港口容量预测以及挖泥工程对港口海上作业的影响

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摘要

Continuous capacity expansion is vital for ports to handle future growth due to the increase in volume of maritime transport and size of the vessels. Some improvements and developments are required for the port to enhance its capacity throughput. In order to accommodate huge vessels without any restrictions, there is a need to deepen the channels. Furthermore, there is also need to widen the channel to prevent congestions. Ho wever, dredging work for deepening the harbour waters will reduce the utilization of the berths and navigational areas . This will significantly affect the port capacity and hence its income. In this paper a simulation program based on queuing theory and di screte event simulation is developed and used for forecasting port throughput and simulating dredging conditions. Data from a container port and an Automatic Identification System (AIS) were utilised to develop the simulation program in MATLAB - Simulink. Us ing this tool, port capacity was simulated and the effect of dredging on port capacity was studied. An appropriate period of time needed for dredging is determined by taking into considerations the blocking of some berths and limiting the number of vessels passing the channel s during the dredging operations. The results from the simulations could then be used for planning the dredging works.
机译:由于海上运输量和船只尺寸的增加,持续的运力扩充对于港口应对未来的增长至关重要。港口需要进行一些改进和发展,以提高其吞吐量。为了容纳巨大的船只而没有任何限制,需要加深通道。此外,还需要加宽通道以防止拥塞。但是,为加深港口水域而进行的疏work工作将减少泊位和航行区的利用。这将严重影响港口的容量,进而影响其收入。本文开发了一种基于排队论和离散事件仿真的仿真程序,并将其用于预测港口吞吐量和模拟疏dr条件。利用来自集装箱港口和自动识别系统(AIS)的数据在MATLAB-Simulink中开发仿真程序。使用该工具,模拟了港口容量,并研究了挖泥对港口容量的影响。通过在疏ging操作期间考虑某些泊位的阻塞和限制通过通道s的船只数量来确定疏for所需的适当时间。仿真的结果可用于计划疏dr工程。

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