共查询到18条相似文献,搜索用时 978 毫秒
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闸口是自动化集装箱码头的重要组成部分,直接影响码头的整体服务水平,是连接港内外交通运输的咽喉要塞。针对钦州港自动化集装箱码头陆路运输比例高达60%、交通组织复杂及可供闸口布置的场地受限等技术难点,经过大量的调研分析,提出分离式闸口共享停车缓冲区设计理念。并对闸口的工艺流程、设计原则、功能设置及平面布置等进行总结,有效实现进出港闸口人工相关业务的一站式解决,为自动化集装箱码头闸口的布置提供一种新思路。 相似文献
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1智能闸口概述集装箱检查桥(以下简称闸口)是集装箱码头的出入口,因进出码头的集装箱在此进行立体检查和交接而得名,实质上是区别码头内外责任的分界点。在传统的闸口作业过程中,闸口理货员的工作内容分为核对单据和系统录入两部分:集港时,审核出口集港箱的装箱单、设备交接单等单据,并将相关信息输入电脑;提箱时,审核提箱凭证、设备交接单、提货单等单据。 相似文献
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Sun Kai 《中国远洋航务公告》2013,(7):88-93
集装箱码头进出闸口业务是码头业务中非常重要的一环,是码头运营者与发货人、收货人相关运输责任的分界点,针对目前绝大多数集装箱码头均采用人工方法在出闸口处收集货物和箱体信息,存在箱检员过多、箱检耗时长、信息输入容易出错以及货物超重后处理方法的不规范等问题,中远希腊集装箱码头公司在2012年年底成功实施自动闸口系统,有效地解决了上述问题。该公司副总经理孙凯作为项目负责人,根据项目的实施过程,撰写了《自动闸口系统:集码发展新助力》一文,通过对集装箱码头进出闸口、称重及交通控制等子系统的详细分析,提出在进出闸口处利用光学字符识别技术(OCR)自动收集集装箱信息,在称重系统中利用压电技术(piezoelectricity)根据集卡车轴数量自动测量集卡总重量,而且将码头操作系统(TOS)、闸口系统(GS)、称重系统(WS)、交通控制系统(TCS)以闭路监控系统(CCTV)有机结合一起,最终实现自动闸口系统(AGS)的方法。不仅大幅提高闸口通过效率,为公司创造了可观收益,有效降低人工成本,而且确保集装箱信息输入准确性和集装箱进出闸的安全。 相似文献
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自动化集装箱码头平面布局设计是码头土建施工设计的依据,总平面布局设计的科学性影响码头建成后运营的作业效率和经济效应。国内自动化集装箱码头平面布局设计研究尚处于空白状态、没有系统分析和深入研究,针对这一现状,对自动化码头总平面布局进行研究。使用指数平滑预测算法预估码头运营后的吞吐量,依据码头吞吐量计算各功能区域相匹配的生产能力。各功能区域的设计须满足各功能区域生产能力的需求;根据业务流程中物理流的流向与衔接,确定功能区域的布局。首次采取了维修区前移、分离异步式闸口等独特设计。对国内其他自动化码头的建设和人工码头的自动化升级改造提供借鉴意义。 相似文献
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对天津港集装箱码头的信息化管理进行简要说明。介绍天津港集装箱码头的大门信息管理、堆场信息管理和码头前沿信息管理。 相似文献
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为验证阿布扎比哈里发港集装箱码头二期项目工程工艺系统设计的合理性,利用面向对象建模的eM-Plant仿真软件对该项目设计方案下的码头整体作业、水平运输、箱区极限装卸和闸口通过能力4个方面进行仿真评估。结果表明工艺系统各环节布置基本合理。对设备调度和交通管理等给出操作建议,为营运方有针对性地进行生产管理和实现港区装卸系统高效运行提供指导。 相似文献
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Hyung Rim Choi Hyun Soo Kim Byung Joo Park Nam-Kyu Park Sang Wan Lee 《Maritime Policy and Management》2003,30(3):197-210
The major characteristics of ERP (Enterprise Resource Planning) are an enterprise-wide system that covers all the business functions and information resources, integrated database, built-in best industry practice, packaged software and open architecture. ERP enables reduction of system development time, flexibility, standardization of workflow and effective business planning capability. ERP is mainly for the manufacturing industry. However, the principles of ERP can also be applied to container terminal operating systems. This paper presents an ERP system approach for a container terminal. It has clustered the workflow of a container terminal and analysed the business process to generate the best workflows. The integrated database is designed to eliminate redundancy and keep integration. The core of ERP for container terminal is the planning facility such as berth planning and yard planning. The planning capability is very tightly coupled with data flow from client entities such as shipping companies. The ERP can handle the existing problems of container terminal operation that are mainly caused by lack of integration of a whole information resource in a container terminal, ad-hoc and poor planning capability, disconnected and incorrect data from client companies. The ERP approach can not only resolve the problems of container terminals but also promote adoption of information systems for container terminals in the world that have not yet implemented terminal operating systems. 相似文献
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Hyung Rim Choi Hyun Soo Kim Byung Joo Park Nam-Kyu Park Sang Wan Lee 《Maritime Policy and Management》2013,40(3):197-210
The major characteristics of ERP (Enterprise Resource Planning) are an enterprise-wide system that covers all the business functions and information resources, integrated database, built-in best industry practice, packaged software and open architecture. ERP enables reduction of system development time, flexibility, standardization of workflow and effective business planning capability. ERP is mainly for the manufacturing industry. However, the principles of ERP can also be applied to container terminal operating systems. This paper presents an ERP system approach for a container terminal. It has clustered the workflow of a container terminal and analysed the business process to generate the best workflows. The integrated database is designed to eliminate redundancy and keep integration. The core of ERP for container terminal is the planning facility such as berth planning and yard planning. The planning capability is very tightly coupled with data flow from client entities such as shipping companies. The ERP can handle the existing problems of container terminal operation that are mainly caused by lack of integration of a whole information resource in a container terminal, ad-hoc and poor planning capability, disconnected and incorrect data from client companies. The ERP approach can not only resolve the problems of container terminals but also promote adoption of information systems for container terminals in the world that have not yet implemented terminal operating systems. 相似文献
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