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A non-intrusive and continuous-in-space technique to investigate the wave transformation and breaking over a breakwater

机译:一种非侵入性的空间连续技术,用于研究防波堤上的波浪变换和破坏

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摘要

To design longshore breakwaters, the evaluation of the wave motion transformations over the structures and of the energy they are able to absorb, dissipate and reflect is necessary. To characterize features and transformations of monochromatic wave trains above a breakwater, both submerged and emerged, we have designed and developed a non-intrusive and continuous-in-space technique, based on Image Analysis, and carried out an experimental campaign, in a laboratory flume equipped with a wave-maker, in order to test it. The investigation area was lighted with a light sheet and images were recorded by a video-camera. The working fluid was seeded with non buoyant particles to make it bright and clearly distinct from dark background and breakwater. The technique, that is based on a robust algorithm to identify the free surface, has showed to properly work also in prohibitive situations for traditional resistive probes (e.g., very shallow waters and/or breaking waves) and to be able to measure the free surface all over the investigation field in a non-intrusive way. Two kind of analysis were mainly performed, a statistical and a spectral one. The peculiarities of the measurement technique allowed to describe the whole wave transformation and to supply useful information for design purposes. © 2016 Owned by the authors, published by EDP Sciences.
机译:为了设计长岸防波堤,必须对结构上的波浪运动转换及其能够吸收,耗散和反射的能量进行评估。为了表征淹没和涌现的防波堤上单色波列的特征和转换,我们在图像分析的基础上设计和开发了一种非侵入性的连续空间技术,并在实验室中进行了实验配备了造波器的水槽,以便对其进行测试。用光片照亮研究区域,并用摄像机记录图像。向工作液中注入无浮力的颗粒,使之明亮,明显不同于深色背景和防波堤。该技术基于用于识别自由表面的鲁棒算法,已显示在传统电阻探头(例如,非常浅的水域和/或破碎波)的禁止情况下也能正常工作,并且能够测量自由表面以非侵入性的方式遍及整个调查领域。主要进行两种分析,一种是统计分析,另一种是光谱分析。测量技术的特殊性允许描述整个波形转换并为设计目的提供有用的信息。 ©2016,作者所有,EDP Sciences出版。

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