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A Lab-Scale Experiment to Measure Terminal Velocity of Volcanic Ash

机译:测量火山灰终速的实验室规模实验

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摘要

In this paper, a novel methodology to measure trajectory and terminal velocity of volcanic ash in laboratory is presented. The methodology consists of the following: 1) planning a lab-scale experiment in order to reproduce the sedimentation processes of fine volcanic ash based on the principle of dynamic similarity; 2) realizing the experimental setup using a glass tank filled with glycerine, a webcam-based vision system and a dedicated image postprocessing tool able to estimate the position and the terminal velocity of any particle falling in the tank; 3) performing a calibration procedure to accurately estimate the uncertainty on particle velocity; and 4) comparing the experimental results with estimations obtained by some particle fallout models available in literature. Our results show that there is a good agreement between experimental terminal velocities and those obtained applying a model which includes information on particle shape. The proposed methodology allows us to investigate how the particle shape affects the sedimentation processes. Since the latter is strategic to improve the accuracy on modeling ash fallout, this work will contribute to reduce risks to aviations during explosive eruptions.
机译:本文提出了一种在实验室中测量火山灰的轨迹和最终速度的新方法。该方法包括以下内容:1)根据动态相似原理,计划实验室规模的实验,以重现细火山灰的沉积过程; 2)使用装有甘油的玻璃罐,基于网络摄像头的视觉系统和专用图像后处理工具来实现实验设置,该工具可以估算掉落在罐中的任何颗粒的位置和最终速度; 3)执行校准程序以准确估计粒子速度的不确定性; 4)将实验结果与文献中一些粒子沉降模型所获得的估计值进行比较。我们的结果表明,实验最终速度与使用包含颗粒形状信息的模型获得的速度之间有很好的一致性。所提出的方法使我们能够研究颗粒形状如何影响沉降过程。由于后者的战略意义是提高灰烬沉降模型的准确性,因此这项工作将有助于减少爆炸爆发时对航空的风险。

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