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Experimental set-up and calibration errors for mapping wave-breaking pressures on marine structures

机译:用于绘制海洋结构上的破波压力的实验装置和校准误差

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摘要

Capturing the detailed spatial variation of pressures induced by breaking waves on physical model structures has become possible using a high resolution mapping system. It can provide data with 4 measuring points/cm(2), whereas the denser pressure measurements reported so far, for wave-structure interaction experiments, were limited to 0.4 pressure transducers/cm(2). The paper explores the main parameters affecting the accuracy and errors of pressure data induced by laboratory set-up and system calibration. The quality of pressure maps deteriorates due to cushioning effects associated to air trapped in the sensor during manufacturing. The sensor's response is also shown to depend on the loading conditions. Non-calibrated outputs returned for impact pressures induced by impinging water-jets are more than three times smaller than the outputs recorded for static pressures, and/or for pressures developed when a material less compliant than water comes forcibly in contact with the sensor. Therefore, the calibration settings must be similar to the conditions anticipated in the experiments. To this end, a set-up and calibration methodology, designed specifically for hydraulic model tests with waves breaking on structures, are proposed and discussed in the paper.
机译:使用高分辨率映射系统,捕获由物理模型结构上的碎波引起的压力的详细空间变化已成为可能。它可以提供4个测量点/ cm(2)的数据,而到目前为止,对于波结构相互作用实验,较密集的压力测量值仅限于0.4压力传感器/ cm(2)。本文探讨了影响实验室设置和系统校准引起的压力数据的准确性和误差的主要参数。由于与制造过程中滞留在传感器中的空气相关的缓冲效应,压力图的质量会下降。还显示了传感器的响应取决于负载条件。由撞击水射流引起的冲击压力返回的未校准输出比静态压力和/或与水不相容的材料强制接触传感器时产生的压力记录的输出小三倍以上。因此,校准设置必须与实验中预期的条件相似。为此,在本文中提出并讨论了一种设置和校准方法,该方法专门设计用于在结构上有波浪的水力模型测试。

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