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Initial Steps toward Characterizing Particle Mobilization using Pore-scale Particle Mobilization Imaging Experiments

机译:使用孔尺度粒子动员成像实验表征粒子动员的初始步骤

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This paper presents the preliminary results of an experimental study focused on investigating the fundamental mechanisms of particle-fluid interactions during soil erosion. Historically, researchers have focused primarily on how various soil properties (grain-size distribution, composition, plasticity) affect water-induced erosion. However, recent investigations suggested it is also important to consider permeating fluids other than pure water and how certain physicochemical properties of these fluids (pH, ionic strength, viscosity, composition and concentration of suspended solids) influence soil erosion behavior. The precise mechanisms of particle-fluid interactions and the role of these mechanisms in governing particle mobilization are not currently understood. In this study, pore-scale particle mobilization imaging experiments were utilized in an attempt to preliminarily characterize the mobilization process in terms of the hydraulic shear stress acting on individual particles. Tests were performed on ASTM 20-30 silica sand specimens formed within a custom-fabricated, acrylic, horizontally oriented flow cell that allowed for visual observation of the specimen. The particle mobilization process was captured using a high-definition CMOS camera and imaging system capable of acquiring clear images of individual particles at several hundred frames per second. To specifically focus on the capabilities of the test setup and avoid the inevitable complications associated with testing multiple permeating fluids, only distilled water was used as a permeating fluid. Preliminary results confirm the system's potential to characterize particle behaviors during mobilization.
机译:本文介绍了一项实验研究的初步结果,该研究致力于调查土壤侵蚀过程中颗粒-流体相互作用的基本机理。从历史上看,研究人员主要关注各种土壤特性(粒度分布,组成,可塑性)如何影响水诱导的侵蚀。但是,最近的研究表明,考虑除纯水以外的其他渗透流体以及这些流体的某些物理化学性质(pH,离子强度,粘度,悬浮固体的组成和浓度)如何影响土壤侵蚀行为也很重要。目前尚不了解粒子-流体相互作用的精确机制以及这些机制在控制粒子动员中的作用。在这项研究中,利用孔隙尺度的颗粒动员成像实验来尝试根据作用在单个颗粒上的水力剪切应力来初步表征动员过程。测试是在ASTM 20-30硅砂样品上进行的,该样品在定制制造的丙烯酸类水平定向流动池中形成,可以目视观察样品。使用高清CMOS相机和成像系统捕获粒子动员过程,该系统能够以每秒几百帧的速度获取单个粒子的清晰图像。为了专门关注测试设置的功能并避免与测试多种渗透液相关的不可避免的复杂性,仅将蒸馏水用作渗透液。初步结果证实了该系统在动员过程中表征颗粒行为的潜力。

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