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Dredging Techniques and Technology to Facilitate a Large Dredge Project-Pier 4 Reconfiguration

机译:疏浚技术和技术,便于大型疏浚项目码头4重新配置

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In order to accommodate two ultra large container vessels simultaneously, the Port of Tacoma determined to reconfigure Pier 4. Consequently, significant dredging was required to realign the shoreline. Dredging included substantial slope cutback, requiring the removal of 465,000 CY (355,518 m~3) of sediment. At its furthest point, the top of the slope necessitated relocating up to 330 feet (100.6 m) and re-shaping 2,000 feet (609.6 m) of shoreline. The project also included placing 100,000 tons (90,718.5 metric tons) of slope armoring rock. This paper will describe the process taken by the contractor, the port, and the design engineer to complete the dredging work on time and the methods used for interaction between each party to allow for a successful project amid multiple challenges. Various technologies were used to track the dredging process, including 3D viewing software that tracked the underwater positioning of the bucket. The expedited review methods ensuring dredging occurred per design and providing time-critical approvals will also be discussed.
机译:为了同时容纳两个超大容器容器,确定塔科马的港口确定为重新配置码头4.因此,需要大量的疏浚来重新安排海岸线。疏浚包括大量坡度削减,需要去除465,000 cy(355,518 m〜3)沉积物。在其最远点,坡度的顶部需要迁移高达330英尺(100.6米)并重新塑造2,000英尺(609.6米)的海岸线。该项目还包括将100,000吨(90,718.5公吨)的坡式装甲岩。本文将描述承包商,港口和设计工程师采取的过程,以按时完成疏浚工作以及用于在多种挑战中允许成功项目之间进行互动的方法。各种技术用于跟踪疏浚过程,包括跟踪铲斗水下位置的3D观看软件。还将讨论确保疏浚和提供时间关键批准的疏浚的加急审查方法。

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