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Fiber-optic probe measurements of void fraction and bubble size distributions beneath breaking waves

机译:光纤探头测量破波下的空隙率和气泡尺寸分布

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摘要

Experiments were performed to determine the accuracy of single-tip fiber-optic probes for making simultaneous measurements of the void fraction and bubble size distributions under breaking waves. Tests in a vertical bubble column showed that the normalized RMS error in the void fraction measurements was ~10%. The relationship between bubble rise time and bubble velocity was investigated in a unidirectional flow cell. Similar to previous studies the rise time and bubble velocity were found to be related by a power law equation. The probes can provide mean bubble velocities accurate to ±10% when a minimum of ~15 individual bubble velocities are averaged. The fiber-optic probes were deployed beneath a plunging breaking wave in a laboratory wave channel. The slope and shape of the bubble cord length size distribution measured with the probes was found to agree closely with the size distribution measured from digital video recordings. The probes were then positioned in the splash-up zone of a plunging breaker and the resulting cord length distribution had a shape and slope that was in agreement with previous measurements. These results demonstrate that single-tip fiber optic probes can provide accurate simultaneous measurements of the void fraction and bubble sizes inside the dense bubble clouds entrained by breaking waves.
机译:进行实验以确定单尖端光纤探头的精度,以便同时测量破波下的空隙率和气泡尺寸分布。在垂直气泡塔中进行的测试表明,空隙率测量中的归一化RMS误差为〜10%。在单向流动池中研究了气泡上升时间与气泡速度之间的关系。与以前的研究相似,发现上升时间和气泡速度与幂律方程有关。当平均至少〜15个独立气泡速度时,这些探针可以提供平均准确至±10%的气泡速度。光纤探头被部署在实验室波通道中的突波下。发现用探针测得的气泡线长度尺寸分布的斜率和形状与数字视频记录测得的尺寸分布非常吻合。然后将探针放置在插入式断路器的飞溅区域中,所得的帘线长度分布的形状和斜率与先前的测量结果一致。这些结果表明,单尖端光纤探头可以同时准确测量碎波夹带的致密气泡云中的空隙率和气泡大小。

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  • 来源
    《Experiments in Fluids》 |2007年第6期|895-906|共12页
  • 作者

    G. Rojas; M. R. Loewen;

  • 作者单位

    Department of Civil and Environmental Engineering University of Alberta Natural Resources Engineering Facility Edmonton AB Canada T6G 2W2;

    Department of Civil and Environmental Engineering University of Alberta Natural Resources Engineering Facility Edmonton AB Canada T6G 2W2;

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  • 正文语种 eng
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