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MAXIMUM CREST HEIGHTS OVER AN AREA: LABORATORY MEASUREMENTS COMPARED TO THEORY

机译:某个区域的最大树冠高度:与理论相比的实验室测量

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Platform decks cover a reasonably large area compared to the size of a wave crest. Ocean waves are dispersive and directionally spread. As they propagate, their crest heights change. A platform deck samples those waves at many different locations. The maximum crest height over the area of a deck during a storm will naturally be greater than the maximum at a single point. The principle is clear but measurements are needed to confirm quantitative theoretical predictions. Such measurements were made in Marin wave basins using an array of 100 wave probes. At prototype scale, they covered an area of 100 by 100 m. Random directionally spread waves with prototype significant wave heights from 12 to 15 m and peak periods from 12 to 15 sec were generated and run through the array. Measurements were also made with pressure gauges mounted underneath a model platform deck placed at 11.5 and 13.0 m above still water level. Numerical simulations are used to find the maximum linear crest height expected over these areas. The second order enhancement of crest is accounted for by factoring the Gaussian maximum. Empirical fits to the simulations were found that can be used for most practical problems.
机译:与波峰的尺寸相比,平台甲板覆盖了相当大的面积。海浪是分散的,并且是定向传播的。随着它们的传播,它们的波峰高度会发生变化。平台甲板在许多不同的位置采样这些波。在暴风雨期间,甲板区域上的最大波峰高度自然会大于单个点的最大波峰高度。原理很明确,但是需要进行测量以确认定量的理论预测。此类测量是使用100个波探针阵列在马林波盆地中进行的。在原型规模上,它们覆盖了100 x 100 m的区域。产生具有12至15 m的原型有效波高和12至15 sec的峰值周期的随机定向传播波,并穿过阵列。还使用安装在模型平台甲板下面的压力计进行测量,该平台平台放置在静止水位以上11.5和13.0 m处。使用数值模拟来找到在这些区域上预期的最大线性波峰高度。波峰的二阶增强是通过考虑高斯最大值来解决的。发现对模拟的经验拟合可用于大多数实际问题。

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