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HYDRALAB III: Guidelines for physical model testing of rubble mound breakwaters

机译:HYDRALAB III:瓦砾土墩防波堤的物理模型试验指南

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Most established laboratories that perform physical modelling have particular methods for hydraulic model studies. Physical modelling procedures in different laboratories vary in e.g. wave generation techniques; typical storm sequences; wave calibration techniques; scaling of short duration (impulsive) loadings; scaling of permeable materials; monitoring of damage and quantifying small armour movements; overtopping analysis; analysis and verification procedures; factors of safety etc. The potential differences in modelling results are difficult to judge, but may be significant in some cases. Reliable comparison of model test results will only be possible if the test set-up, measurement techniques and modelling approach are verifiably (i.e. geometrically, dynamically and kinematically) similar. This is often not the case, so comparisons between model results from different laboratories and data transfer between laboratories are complicated. This paper presents new guidelines to form a basis for a more unified physical modelling approach, which simplifies data transfer and the interpretation of modelling results gathered by varying laboratories and modelling approaches. To achieve this more unified modelling approach, guidelines for good laboratory practice in physical (experimental) model testing of coastal structures exposed to wave action have been developed.
机译:大多数已建立的实验室,进行物理建模具有特定的液压模型研究方法。不同实验室的物理建模程序在例如时变化。波浪生成技术;典型的风暴序列;波校准技术;短持续时间(脉冲)载荷的缩放;可渗透材料的缩放;监测损坏和量化小装甲运动;概述分析;分析和核查程序;安全性等因素等。建模结果的潜在差异难以判断,但在某些情况下可能是显着的。如果可判断测试设置,测量技术和建模方法,则只能有可能进行模型测试结果的可靠比较(即几何,动态和运动学)相似。这通常不是这种情况,因此来自不同实验室的模型结果与实验室之间的数据传输之间的比较复杂化。本文介绍了形成更统一的物理建模方法的基础的新指南,这简化了数据传输和通过不同的实验室和建模方法收集的建模结果的解释。为了实现这种更统一的建模方法,已经开发出良好的实验室实践指南(实验性)模型测试,暴露于波浪动作的沿海结构。

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