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LOCK EXTENSIONS FOR NAVIGATION IMPROVEMENTS IN THE UNITED STATES INLAND WATERWAYS

机译:锁定美国内陆水道的导航改进延伸

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The United States waterway system finds itself facing increasing commercial traffic while the system's infrastructure has essentially reached its design life. The result is an increased demand on the nation's navigation locks. Financial constraints require innovative design concepts on infrastructure improvements. The overall savings estimated from the use of these innovative construction concepts for the US Army Corps of Engineer's top 11 high-priority navigation projects (lock replacements) are between 1.4 and 1.8 billion dollars. One of the innovative designs being considered by several projects is extending the lock walls of existing 204.2 m locks and converting them into 408.4 m long locks. A cost effective design alternative being considered for the filling and emptying system is the use of existing 204.2 m lock systems to fill the 408.4 m locks. This type of system is hydraulically unbalanced and could be prone to extremely slow filling and emptying times, and higher hawser forces. If the filling and emptying times are slow enough to adversely affect the total transit time, significant economic losses could occur. Also, if the hydraulic performance of the system is poor, the risk of accidents increases due to excessive hawser forces and surface disturbances. Research on these systems has determined minimum filling and emptying times, with acceptable hawser forces, minimal surface drift, and disturbance. Design guidance is developed from a combination of laboratory flume data supplemented with computational modeling results. This paper presents the modeling methods used to establish design criteria. This criterion is necessary for design engineers investigating the 204.2 m extension alternative.
机译:美国水路系统发现本身面临着越来越多的商业流量,而系统的基础设施基本上达成了其设计生活。结果是对国家导航锁的需求增加。财务限制需要对基础设施改进的创新设计概念。从使用这些创新建筑概念的美国陆军队伍的工程师顶级11个高优先级导航项目(锁定替代品)的整体储蓄估计为1.4至18亿美元。几个项目所考虑的创新设计之一正在延长现有204.2米锁的锁壁并将其转换为408.4米的长锁。考虑用于填充和排空系统的经济高效的设计替代方案是使用现有的204.2米锁定系统来填充408.4米锁。这种类型的系统是液压不平衡的,可以容易产生极高的填充和排空时间,以及更高的Havser力。如果填充和排空时间足够缓慢以对总运输时间产生不利影响,则可能发生重大的经济损失。此外,如果系统的液压性能差,则由于过度的HAWSER力和表面干扰,事故的风险增加。对这些系统的研究已经确定了最小的填充和排空时间,具有可接受的HAWSER力,最小的表面漂移和干扰。从补充有计算建模结果的实验​​室水槽数据的组合开发了设计指导。本文介绍了用于建立设计标准的建模方法。该标准是设计工程师所必需的,调查204.2米延期替代方案。

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