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Vorticity And Intermittency Within The Pre-breaking Region Of Spilling Breakers

机译:溢出破碎器破裂前区域内的涡度和间歇性

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摘要

This paper presents measurements and analysis of fluid velocity within the context of spilling waves. The data have been collected using 2-D Laser Doppler Velocimetry in pre-breaking monochromatic waves generated in a wave tank. The analysis is performed using orthogonal wavelets and, in addition to the classical criterion adopted in applying Taylor's hypothesis, a new algorithm is proposed for the eduction of eddies at different length scales. The contribution of different scale vortices is computed, and phase is resolved. Microvortices (smaller than the breaker height but larger than the dissipative vortices) and midsize vortices (with length ranging from the breaker height to the wave length) carry out most turbulence energy under wave crest. The phase average vorticity and strain rate is computed at different wave lengths, with the analysis of intermittence. The intermittency factor shows spikes in the wave crest, especially for turbulence in small vortices.
机译:本文介绍了溢出波背景下流体速度的测量和分析。数据是使用2-D激光多普勒测速仪在破波罐中产生的单色波中进行收集的。使用正交小波进行分析,除了应用泰勒假设时采用的经典标准外,还提出了一种新的算法,用于在不同长度尺度上产生涡流。计算了不同尺度旋涡的贡献,并确定了相位。微涡流(小于破碎器高度,但大于耗散涡流)和中型涡流(长度范围从破碎器高度到波长)在波峰下产生最大的湍流能。通过对间歇性的分析,可以计算出不同波长下的相位平均涡度和应变率。间歇性因素显示出波峰的尖峰,特别是对于小旋涡中的湍流。

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