用条纹角可视化方法检测颗粒管流动中的湍流模式

IF 2.5 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Rishav Raj, Abhiram Thiruthummal, Alban Pothérat
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引用次数: 0

摘要

在流体动力学中,检测颗粒管道系统中从层流到湍流的转变一直是一个复杂的问题,通常需要复杂而昂贵的实验设备。本研究提出了一种创新的条纹可视化方法,旨在提供一种简单而稳健的方法来识别带有中性浮力颗粒的颗粒管道流动中的过渡湍流模式。该技术采用激光排列和低成本的相机装置来捕捉流体中颗粒产生的条纹,从而能够捕捉流动模式的时间演变。该方法的新颖之处在于从条纹角分布的统计特性中识别层流和湍流流型。通过与颗粒图像测速(PIV)和压降测量等现有技术进行比较,验证了该方法的准确性和可靠性。实验表明,通过分析条纹角度的标准差,条纹可视化方法能够区分层流、过渡流和湍流流态。该方法适用于很大范围的粒子浓度,只要层流和湍流模式的统计分布不同,使其具有通用性,而其他方法可能面临局限性。此外,该技术使我们能够利用建立在条纹角统计分布上的Kullback-Leibler散度来确定临界雷诺数,这与先前的研究一致。这种条纹可视化方法为分析实验室环境和特定工业场景下的颗粒管道流动提供了潜力,特别是当流体是透明的,颗粒是自然存在的或作为示踪剂添加时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detecting turbulent patterns in particulate pipe flow by streak-angle visualization

Detecting the transition from laminar to turbulent flow in particulate pipe systems remains a complex issue in fluid dynamics, often requiring sophisticated and costly experimental apparatus. This research presents an innovative streak visualization method designed to offer a simple and robust approach to identify transitional turbulent patterns in particulate pipe flows with neutrally buoyant particles. The technique employs a laser arrangement and a low-cost camera setup to capture particle-generated streaks within the fluid, enabling the capture of the temporal evolution of flow patterns. The novelty of the method lies in identifying laminar and turbulent flow patterns from the statistical properties of streak-angle distributions. Validation of the proposed method was conducted through comparison with established techniques like particle image velocimetry (PIV) and pressure drop measurements, confirming its accuracy and reliability. Experiments demonstrate the streak visualization method’s capacity to differentiate between laminar, transitional, and turbulent flow regimes by analysing the standard deviation of streak angles. The method is applicable across a wide range of particle concentrations, as long as the statistical distributions of laminar and turbulent patterns differ, making it versatile where other methods may face limitations. Furthermore, this technique enables us to identify a critical Reynolds number using the Kullback–Leibler divergence built on the statistical distribution of streak angles, which is consistent with previous studies. This streak visualization method offers potential for analysing particulate pipe flows in both laboratory environments and specific industrial scenarios, especially when the fluid is transparent and particles are either naturally occurring or added as tracers.

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来源期刊
Experiments in Fluids
Experiments in Fluids 工程技术-工程:机械
CiteScore
5.10
自引率
12.50%
发文量
157
审稿时长
3.8 months
期刊介绍: Experiments in Fluids examines the advancement, extension, and improvement of new techniques of flow measurement. The journal also publishes contributions that employ existing experimental techniques to gain an understanding of the underlying flow physics in the areas of turbulence, aerodynamics, hydrodynamics, convective heat transfer, combustion, turbomachinery, multi-phase flows, and chemical, biological and geological flows. In addition, readers will find papers that report on investigations combining experimental and analytical/numerical approaches.
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