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Interaction of idealized urban infrastructure and long waves during run-up and on-land flow process in coastal regions

机译:沿海地区理想的城市基础设施与长波在陆上和陆上流动过程中的相互作用

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摘要

This paper reports experimental results of long wave run-up climbing up a 1:40 sloping beach. The resulting maximum run-up is compared with analytical results and a good agreement is found for single sinusoidal waves with uniform wave period and varying amplitude. Subsequently, the interaction with macro-roughness elements on the beach is investigated for different long-shore obstruction ratios. The reduction in wave run-up is expressed by means of a nomogram relating the wave run-up without macro-roughness elements present to those cases where on-land flow is modified by macro-roughness. The presented results mainly focus on a non-staggered and non-rotated macro-roughness configuration. In addition to the run-up reduction, surface elevation profiles on the shore are presented, that address the shock wave generation when the wave tongue approaches the first row of macro-roughness elements.
机译:本文报告了在1:40的倾斜海滩上长波爬升的实验结果。将得到的最大加速比与分析结果进行比较,并且对于具有均匀波周期和振幅变化的单正弦波,发现了很好的一致性。随后,针对不同的长岸阻塞率,研究了与海滩上的宏观粗糙度元素的相互作用。波浪起伏的减少是通过将不存在宏观粗糙度元素的波浪起伏与通过宏观粗糙度改变陆上流量的情况相关的诺模图来表示的。提出的结果主要集中在非交错和非旋转的宏观粗糙度配置上。除了减少径流外,还提供了岸上的表面高程剖面,该剖面可以解决当波舌接近宏观粗糙度元素的第一行时冲击波的产生。

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