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A combined numerical-experimental approach to analyze cross flow problems in the entrance channel: A case study of Lanshan Port, China

机译:数值试验相结合的方法分析进口通道错流问题-以中国岚山港为例

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摘要

The present study combines numerical and experimental approaches to investigate cross flow problems in the entrance channel of a harbor. The combined numerical-experimental approach is illustrated by an application to Lanshan Port (Shandong, China) where large tidal ranges and a newly planned harbor layout may give rise to strong cross flow in the entrance channel of the planned harbor. The resulting flow field with the numerical prediction shows that the layout of newly planned harbor has a major impact on the cross flow speeds in the entrance channel. This will affect the navigation safety of ship entering or leaving the harbor. A corresponding protective scheme related to breakwaters was put forward. A series of physical model experiments under the given flow provided by the numerical approach, were conducted to design the length and crest elevation of a previously proposed breakwater. Results from a series of laboratory model tests show a significant reduction of flow velocities across the entrance channel with longer breakwater length and higher crest elevation. However, a longer or higher breakwater obviously can expand the cross flow influenced zone into the entrance channel. The acceptable breakwater length and crest elevation were determined by taking account the maximum cross flow speed and cross flow influenced zone in addition to the construction cost.
机译:本研究结合了数值和实验方法来研究港口入口通道中的横流问题。结合数值实验的方法通过在岚山港(中国山东省)的应用进行了说明,潮汐范围大且新规划的港口布局可能会在规划港口的入口通道中产生强烈的横流。通过数值预测得到的流场表明,新规划港口的布局对入口通道的横流速度有重大影响。这将影响船舶进出港口的航行安全。提出了与防波堤有关的防护措施。在数值方法提供的给定流量下进行了一系列物理模型实验,以设计先前提出的防波堤的长度和波峰高度。一系列实验室模型测试的结果表明,越长的防波堤长度和越高的波峰高度,穿过入口通道的流速就大大降低了。但是,更长或更长时间的防波堤显然可以将横流影响区扩展到入口通道。可接受的防波堤长度和波峰高度是通过考虑最大的横流速度和横流影响区域以及施工成本来确定的。

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